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<front>
<journal-meta>
<journal-id journal-id-type="publisher-id">Front. Psychiatry</journal-id>
<journal-title-group>
<journal-title>Frontiers in Psychiatry</journal-title>
<abbrev-journal-title abbrev-type="pubmed">Front. Psychiatry</abbrev-journal-title>
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<issn pub-type="epub">1664-0640</issn>
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<publisher-name>Frontiers Media S.A.</publisher-name>
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<article-meta>
<article-id pub-id-type="doi">10.3389/fpsyt.2026.1736813</article-id>
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<article-categories>
<subj-group subj-group-type="heading">
<subject>Original Research</subject>
</subj-group>
</article-categories>
<title-group>
<article-title>MRI assessment of intrinsic neural timescales in male alcohol use disorder patients</article-title>
</title-group>
<contrib-group>
<contrib contrib-type="author">
<name><surname>Wang</surname><given-names>Weijian</given-names></name>
<xref ref-type="aff" rid="aff1"><sup>1</sup></xref>
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<name><surname>Kang</surname><given-names>Yimeng</given-names></name>
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<name><surname>Guo</surname><given-names>Yichen</given-names></name>
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<name><surname>Zhang</surname><given-names>Hui</given-names></name>
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<contrib contrib-type="author">
<name><surname>Ma</surname><given-names>Longyao</given-names></name>
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<name><surname>Mei</surname><given-names>Bohui</given-names></name>
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<name><surname>Zhang</surname><given-names>Mengzhe</given-names></name>
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<name><surname>Wei</surname><given-names>Yarui</given-names></name>
<xref ref-type="aff" rid="aff1"><sup>1</sup></xref>
<xref ref-type="corresp" rid="c001"><sup>*</sup></xref>
<xref ref-type="author-notes" rid="fn003"><sup>&#x2020;</sup></xref>
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<name><surname>Zhang</surname><given-names>Yong</given-names></name>
<xref ref-type="aff" rid="aff1"><sup>1</sup></xref>
<xref ref-type="corresp" rid="c001"><sup>*</sup></xref>
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<aff id="aff1"><label>1</label><institution>Department of Magnetic Resonance Imaging, The First Affiliated Hospital of Zhengzhou University</institution>, <city>Zhengzhou</city>,&#xa0;<country country="cn">China</country></aff>
<aff id="aff2"><label>2</label><institution>Department of Radiology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology</institution>, <city>Wuhan</city>,&#xa0;<country country="cn">China</country></aff>
<author-notes>
<corresp id="c001"><label>*</label>Correspondence: Yong Zhang, <email xlink:href="mailto:zzuzhangyong2013@163.com">zzuzhangyong2013@163.com</email>; Yarui Wei, <email xlink:href="mailto:yarui_wei@163.com">yarui_wei@163.com</email></corresp>
<fn fn-type="equal" id="fn003">
<label>&#x2020;</label>
<p>These authors contributed equally to this work and share last authorship</p></fn>
</author-notes>
<pub-date publication-format="electronic" date-type="pub" iso-8601-date="2026-02-19">
<day>19</day>
<month>02</month>
<year>2026</year>
</pub-date>
<pub-date publication-format="electronic" date-type="collection">
<year>2026</year>
</pub-date>
<volume>17</volume>
<elocation-id>1736813</elocation-id>
<history>
<date date-type="received">
<day>31</day>
<month>10</month>
<year>2025</year>
</date>
<date date-type="accepted">
<day>30</day>
<month>01</month>
<year>2026</year>
</date>
<date date-type="rev-recd">
<day>23</day>
<month>01</month>
<year>2026</year>
</date>
</history>
<permissions>
<copyright-statement>Copyright &#xa9; 2026 Wang, Wang, Kang, Li, Guo, Zhang, Tian, Ma, Mei, Zhang, Wei and Zhang.</copyright-statement>
<copyright-year>2026</copyright-year>
<copyright-holder>Wang, Wang, Kang, Li, Guo, Zhang, Tian, Ma, Mei, Zhang, Wei and Zhang</copyright-holder>
<license>
<ali:license_ref start_date="2026-02-19">https://creativecommons.org/licenses/by/4.0/</ali:license_ref>
<license-p>This is an open-access article distributed under the terms of the <ext-link ext-link-type="uri" xlink:href="https://creativecommons.org/licenses/by/4.0/">Creative Commons Attribution License (CC BY)</ext-link>. The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.</license-p>
</license>
</permissions>
<abstract>
<sec>
<title>Background</title>
<p>Alcohol use disorder (AUD) is a chronic, relapsing condition marked by compulsive drinking, imposing a significant burden on both the individual and their environment. The intrinsic neural timescale (INT) is determined through the assessment of autocorrelation of the brain activity in resting-state functional magnetic resonance imaging, serving to elucidate the diversity of neural timescales.</p>
</sec>
<sec>
<title>Method</title>
<p>This study involved 55 alcohol-dependent patients and 33 non-drinking healthy controls (HCs) matched for age, sex, and hand-use habits. We calculated the INT by evaluating the strength of autocorrelation in resting-state brain activity, and subsequently compared between-group differences in INT. We also analyzed the correlation between abnormal INT and clinical characteristics.</p>
</sec>
<sec>
<title>Result</title>
<p>The AUD group exhibited significantly longer INT in the left and right thalamus when compared to the HC group. Additionally, significantly shorter INT was observed in the calcarine cortex in the AUD group in comparison to the HC group.</p>
</sec>
<sec>
<title>Conclusion</title>
<p>Our study identified abnormalities of the brain activity at the resting state in alcohol-dependent patients by means of an INT approach, which may provide more insight into the neural mechanisms of alcohol dependence.</p>
</sec>
</abstract>
<kwd-group>
<kwd>alcohol use disorder</kwd>
<kwd>default networks</kwd>
<kwd>intrinsic neural timescale</kwd>
<kwd>neurodynamic changes</kwd>
<kwd>visual attention network</kwd>
</kwd-group>
<funding-group>
<funding-statement>The author(s) declared financial support was received for this work and/or its publication. This work was supported by the Special Project for Scientific Research on Traditional Chinese Medicine in Henan Province in2024 (2024ZY3085), the Key Research Project Program for Higher Education Institutions in Henan Province in 2024(24A320059), and Henan Provincial Medical Science and Technology Research Project Major Project Jointly Established by Provincial and Ministerial Authorities (SBGJ202101013).</funding-statement>
</funding-group>
<counts>
<fig-count count="2"/>
<table-count count="2"/>
<equation-count count="0"/>
<ref-count count="70"/>
<page-count count="9"/>
<word-count count="4196"/>
</counts>
<custom-meta-group>
<custom-meta>
<meta-name>section-at-acceptance</meta-name>
<meta-value>Addictive Disorders</meta-value>
</custom-meta>
</custom-meta-group>
</article-meta>
</front>
<body>
<sec id="s1" sec-type="intro">
<label>1</label>
<title>Introduction</title>
<p>Alcohol use disorder (AUD) is a chronic relapsing condition marked by compulsive drinking, imposing a significant burden on both the affected individual and their immediate environment (<xref ref-type="bibr" rid="B1">1</xref>). Recently, it is estimated that more than 10% of the population was affected (<xref ref-type="bibr" rid="B2">2</xref>). Recognized as one of the primary causes of global morbidity and mortality, AUD poses a substantial public health challenge (<xref ref-type="bibr" rid="B3">3</xref>). Despite the availability of evidence-based psychotherapeutic and pharmacologic interventions, a considerable portion of individuals with AUD fail to sustain long-term improvement. Detoxified AUD patients have reported relapse rates of up to 85% without continued treatment (<xref ref-type="bibr" rid="B4">4</xref>, <xref ref-type="bibr" rid="B5">5</xref>). Further still, even following extended hospitalization, between 20-80% of AUD patients resume drinking within 12 months of discharge from the hospital (<xref ref-type="bibr" rid="B6">6</xref>). Imaging biomarkers for AUD are increasingly important for monitoring progress in clinical trials (<xref ref-type="bibr" rid="B7">7</xref>).</p>
<p>Many previous multimodal medical imaging studies have revealed several satisfying findings about AUD, including structural and functional alterations, static and dynamic, which have been very useful in revealing neurobiological markers of AUD (<xref ref-type="bibr" rid="B8">8</xref>, <xref ref-type="bibr" rid="B9">9</xref>). B&#xf6;hmer et&#xa0;al. used a graph theory approach and revealed that at the whole-brain level, relapsers processed information in segregated ways within functionally interconnected regions, rather than efficiently distributing information throughout the brain; at the local level, relapsers exhibit dysfunctional integration and decoupling between multiple brain systems, particularly involving cortical and subcortical brain regions associated with higher executive functions, sensory and reward processing (<xref ref-type="bibr" rid="B10">10</xref>). AUD has previously been linked to gray matter differences in the prefrontal cortex and reward-processing areas (<xref ref-type="bibr" rid="B11">11</xref>, <xref ref-type="bibr" rid="B12">12</xref>). Thus, studies of changes in activity in brain regions may provide a further wealth of information.</p>
<p>The importance of the destruction of localized areas of the brain is not something we can ignore. As recently reported, combining the amplitude of low frequency fluctuation (ALFF) or regional homogeneity (ReHo) with &#x201c;sliding-window&#x201d; approaches, the dynamic ALFF/ReHo method provides a new avenue to depict time-varying local brain activity (<xref ref-type="bibr" rid="B13">13</xref>) and has been used in patients with depression (<xref ref-type="bibr" rid="B14">14</xref>), generalized anxiety disorder (<xref ref-type="bibr" rid="B15">15</xref>), cigarette smoking (<xref ref-type="bibr" rid="B16">16</xref>, <xref ref-type="bibr" rid="B17">17</xref>), schizophrenia (<xref ref-type="bibr" rid="B18">18</xref>), conduct disorder (<xref ref-type="bibr" rid="B19">19</xref>, <xref ref-type="bibr" rid="B20">20</xref>), epilepsy (<xref ref-type="bibr" rid="B21">21</xref>) and so on. We may speculate that analyzing time-varying patterns of local brain activity holds promise for understanding the neuropathological mechanisms of psychiatric disorders. Although studies have demonstrated the presence of abnormal spontaneous brain activity in patients with AUD (<xref ref-type="bibr" rid="B22">22</xref>), it remains uncertain whether precise intrinsic neural timescales (INT) within local brain regions manifest abnormalities in individuals with AUD.</p>
<p>To deepen our understanding of local intrinsic brain activity, Watanabe et&#xa0;al. (<xref ref-type="bibr" rid="B23">23</xref>) proposed a new method called INT, which calculates the neural heterogeneity by evaluating the degree of autocorrelation of the resting state brain activity, and is used to characterize the length of time that neurological information may be stored in the neural regions, which is considered to characterize the functional hierarchy of the local brain region (<xref ref-type="bibr" rid="B24">24</xref>&#x2013;<xref ref-type="bibr" rid="B30">30</xref>). INT is thought to represent a temporal window for the integration of neural information, reflecting an ability to accumulate information over long periods of time. Through autocorrelation function analysis, it quantifies the persistence and integration window of neural activity time series, directly characterizing the nervous system&#x2019;s temporal integration capacity for information. This provides a direct quantitative metric for understanding the temporal mechanisms of brain information processing (<xref ref-type="bibr" rid="B31">31</xref>). In contrast, traditional rs-fMRI studies (such as ALFF, ReHo, and functional connectivity) primarily describe the spatial characteristics or signal amplitude of neural activity (<xref ref-type="bibr" rid="B32">32</xref>, <xref ref-type="bibr" rid="B33">33</xref>). Furthermore, while conventional metrics fail to reveal cross-brain temporal specialization patterns, INT presents a hierarchical temporal gradient distribution across the entire brain (<xref ref-type="bibr" rid="B34">34</xref>). For instance, INT values progressively increase from primary sensory cortices to higher-order association cortices, capturing the &#x201c;cross-cortical temporal gradient&#x201d; that traditional metrics cannot quantify. This provides crucial evidence for functional hierarchy abnormalities throughout the brain. We hypothesize that patients with AUD exhibit abnormalities in their INT. This phenomenon may directly reveal disruptions in the functional hierarchy of relevant brain regions, providing direct evidence for systematically investigating the neurobiological mechanisms underlying AUD.</p>
<p>Longer INT represent higher levels of neural hierarchies, such as the prefrontal and parietal lobes, which require longer timescales than peripheral sensory areas to enable these higher-order cerebral cortices to integrate a variety of information (<xref ref-type="bibr" rid="B24">24</xref>, <xref ref-type="bibr" rid="B28">28</xref>), relying on stable cognitive processes that accumulate information over time (<xref ref-type="bibr" rid="B25">25</xref>). In contrast, shorter INT indicate more random brain activity, which allows for rapid responses to changing stimuli in the environment (<xref ref-type="bibr" rid="B24">24</xref>). This new pathway has been successfully applied to study the dynamics of localized brain regions in the resting state of patients with autism spectrum disorders (<xref ref-type="bibr" rid="B23">23</xref>) and schizophrenia (<xref ref-type="bibr" rid="B35">35</xref>). In particular, Watanabe et&#xa0;al. concluded that faster INT in the sensorimotor cortex correlate significantly and reproducibly with atypical behaviors in autism. However, to date, no local intrinsic neurodynamic have been studied to determine whether abnormal INT was exhibited in patients with AUD.</p>
<p>Thus, this study aimed to: (1) assess whether abnormal INT is present in the brain of AUD patients; (2) explore the correlation between abnormal INT in AUD patients and clinical symptoms.</p>
</sec>
<sec id="s2" sec-type="materials|methods">
<label>2</label>
<title>Materials and methods</title>
<sec id="s2_1">
<label>2.1</label>
<title>Participants</title>
<p>This study randomly recruited 55 AUD patients and 32 HCs (<xref ref-type="table" rid="T1"><bold>Table&#xa0;1</bold></xref>). Individuals with AUD were recruited from inpatient wards, internet postings, and advertisements. Meanwhile, participants in the HC group were volunteers from the local communities. Because body mass index (BMI) and smoking are highly associated with alcohol (<xref ref-type="bibr" rid="B36">36</xref>, <xref ref-type="bibr" rid="B37">37</xref>), we also recorded the BMI data of all subjects and recorded whether the participants were smokers (in part of subjects). We also recorded the duration of alcohol drinking, alcohol by volume, the frequency of alcohol drinking per week, the amount of alcohol drinking, mean amount of pure alcohol per week (amount of alcohol drinking per day &#xd7; frequency of alcohol drinking per week &#xd7; alcohol by volume &#xd7; 0.8), and the willingness of abstinence (0 for no willingness of abstinence and 1 for the willingness of abstinence). All subjects were men in this study. Inclusion criteria of AUD patients were: (1) meeting the DSM-V criteria for AUD based on the clinical assessment of the principal investigator; (2) ranging in age from 18 to 65 years old; (3) drinking on average more than 14 units of alcohol per week according to the U.K. Chief Medical Officers (<xref ref-type="bibr" rid="B38">38</xref>); (4) no medical history of neurological system or medical diseases; (5) could understand and consent to study procedures. Exclusion criteria for both AUD and HCs were: (1) having a history of psychiatric, neurological, or physical disorder; (2) having contraindications for magnetic resonance imaging (MRI); (3) reporting currently taking centrally active medications. The severity of AUD was assessed using the alcohol dependence scale (ADS), alcohol use disorder identification test (AUDIT), cut down, annoyed, guilty, eye-opener (CAGE), alcohol, smoking, and substance use involvement screening test (ASSIST), obsessive-compulsive drinking scale (OCDS), clinical institute withdrawal assessment for alcohol dependence, revised (CIWA-Ar), and Michigan alcoholism screening test (MAST). We measured cognitive impairment of AUD patients using the Montreal cognitive assessment (MoCA).</p>
<table-wrap id="T1" position="float">
<label>Table&#xa0;1</label>
<caption>
<p>The demographic and clinical data of AUD and HC.</p>
</caption>
<table frame="hsides">
<thead>
<tr>
<th valign="middle" align="left">Demographics</th>
<th valign="middle" align="center">AUD (n = 55)</th>
<th valign="middle" align="center">HC (n = 32)</th>
<th valign="middle" align="center"><italic>P</italic> values</th>
</tr>
</thead>
<tbody>
<tr>
<td valign="middle" align="left">Age (years, SD)</td>
<td valign="middle" align="center">45.56 (8.88)</td>
<td valign="middle" align="center">42.47 (12.34)</td>
<td valign="middle" align="center">0.090</td>
</tr>
<tr>
<td valign="middle" align="left">BMI (kg/m<sup>2</sup>, SD)</td>
<td valign="middle" align="center">25.37 (2.92)</td>
<td valign="middle" align="center">26.31 (2.21)</td>
<td valign="middle" align="center">0.076</td>
</tr>
<tr>
<th valign="middle" colspan="4" align="left">Sex</th>
</tr>
<tr>
<td valign="middle" align="left">&#x2003;Female</td>
<td valign="middle" align="center">0</td>
<td valign="middle" align="center">0</td>
<td valign="middle" rowspan="2" align="center">&#x2013;</td>
</tr>
<tr>
<td valign="middle" align="left">&#x2003;Male</td>
<td valign="middle" align="center">55</td>
<td valign="middle" align="center">32</td>
</tr>
<tr>
<th valign="middle" colspan="4" align="left">Smoking status (AUD: n = 49; HC = 17)</th>
</tr>
<tr>
<td valign="middle" align="left">&#x2003;Smoker</td>
<td valign="middle" align="center">32</td>
<td valign="middle" align="center">17</td>
<td valign="middle" rowspan="2" align="center">&#x2013;</td>
</tr>
<tr>
<td valign="middle" align="left">&#x2003;Non-smoker</td>
<td valign="middle" align="center">17</td>
<td valign="middle" align="center">&#x2013;</td>
</tr>
<tr>
<td valign="middle" align="left">Duration of drinks (years, n = 29, SD)</td>
<td valign="middle" align="center">20.14 (9.89)</td>
<td valign="middle" align="center">&#x2013;</td>
<td valign="middle" align="center">&#x2013;</td>
</tr>
<tr>
<td valign="middle" align="left">Alcohol by volume (%, n = 28, SD)</td>
<td valign="middle" align="center">51.71 (1.08)</td>
<td valign="middle" align="center">&#x2013;</td>
<td valign="middle" align="center">&#x2013;</td>
</tr>
<tr>
<td valign="middle" align="left">Frequency (days/week, n = 30, SD)</td>
<td valign="middle" align="center">4.09 (1.91)</td>
<td valign="middle" align="center">&#x2013;</td>
<td valign="middle" align="center">&#x2013;</td>
</tr>
<tr>
<td valign="middle" align="left">Amount of drinks (ml/day, n = 30, SD)</td>
<td valign="middle" align="center">238.33 (108.82)</td>
<td valign="middle" align="center">&#x2013;</td>
<td valign="middle" align="center">&#x2013;</td>
</tr>
<tr>
<td valign="middle" align="left">Mean amount of alcohol (g/week, n = 30, SD)</td>
<td valign="middle" align="center">522.38 (333.83)</td>
<td valign="middle" align="center">&#x2013;</td>
<td valign="middle" align="center">&#x2013;</td>
</tr>
<tr>
<td valign="middle" align="left">CAGE (n = 33, SD)</td>
<td valign="middle" align="center">1.18 (0.98)</td>
<td valign="middle" align="center">&#x2013;</td>
<td valign="middle" align="center">&#x2013;</td>
</tr>
<tr>
<td valign="middle" align="left">AUDIT (n = 34, SD)</td>
<td valign="middle" align="center">19.97 (7.22)</td>
<td valign="middle" align="center">&#x2013;</td>
<td valign="middle" align="center">&#x2013;</td>
</tr>
<tr>
<td valign="middle" align="left">CIWA-Ar (n = 41, SD)</td>
<td valign="middle" align="center">8.37 (7.02)</td>
<td valign="middle" align="center">&#x2013;</td>
<td valign="middle" align="center">&#x2013;</td>
</tr>
<tr>
<td valign="middle" align="left">ASSIST (n = 30, SD)</td>
<td valign="middle" align="center">21.20 (7.22)</td>
<td valign="middle" align="center">&#x2013;</td>
<td valign="middle" align="center">&#x2013;</td>
</tr>
<tr>
<td valign="middle" align="left">MAST (n = 31, SD)</td>
<td valign="middle" align="center">15.00 (8.58)</td>
<td valign="middle" align="center">&#x2013;</td>
<td valign="middle" align="center">&#x2013;</td>
</tr>
<tr>
<td valign="middle" align="left">ADS (n = 41, SD)</td>
<td valign="middle" align="center">12.76 (6.66)</td>
<td valign="middle" align="center">&#x2013;</td>
<td valign="middle" align="center">&#x2013;</td>
</tr>
<tr>
<td valign="middle" align="left">OCDS (n = 31, SD)</td>
<td valign="middle" align="center">14.42 (9.95)</td>
<td valign="middle" align="center">&#x2013;</td>
<td valign="middle" align="center">&#x2013;</td>
</tr>
<tr>
<td valign="middle" align="left">MoCA (n = 29, SD)</td>
<td valign="middle" align="center">28.24 (1.27)</td>
<td valign="middle" align="center">&#x2013;</td>
<td valign="middle" align="center">&#x2013;</td>
</tr>
</tbody>
</table>
<table-wrap-foot>
<fn>
<p>ADS, alcohol dependence scale; AUD, alcohol use disorder; AUDIT, alcohol use disorder identification test; ASSIST, alcohol, smoking, and substance use involvement screening test; BMI, body mass index; CAGE, cutdown, annoyed, guilty, eye-opener; CIWA-Ar, clinical institute withdrawal assessment for alcohol dependence, revised; HC, healthy control; MAST, Michigan alcoholism screening test; MoCA, Montreal cognitive assessment; OCDS, obsessive compulsive drinking scale.</p></fn>
</table-wrap-foot>
</table-wrap>
</sec>
<sec id="s2_2">
<label>2.2</label>
<title>Data acquisition</title>
<p>All subjects were scanned using a 3.0T MRI scanner (MAGNETOM Prisma, SIEMENS, Germany) with a 64-channel receiver array head coil. Head motion and scanner noise were reduced using foam padding and earplugs. All participants were asked to remain alert with their eyes closed. We collected resting-state functional MRI (rs-fMRI) data from all participants. Functional images were acquired transversely with gradient spin echo planar imaging (EPI) sequence with the following settings: TR/TE = 1000/30 ms, slice number = 52, slice thickness = 2.2 mm, slice gap = 0.4 mm, flip angle = 70&#xb0;, field of view = 17.6 &#xd7; 17.6 cm<sup>2</sup>, number of averages = 1, matrix size = 64 &#xd7; 64, voxel size = 2.75 &#xd7; 2.75 &#xd7; 2.2 mm<sup>3</sup>. A total of 400 volumes were collected, resulting in a total scan time of 6.67 mins.</p>
</sec>
<sec id="s2_3">
<label>2.3</label>
<title>Data preprocessing</title>
<p>The functional images were preprocessed using Data Processing Assistant for Resting-State fMRI (DPARSF) programs (<xref ref-type="bibr" rid="B39">39</xref>), which are based on Statistical Parametric Mapping 12 (SPM12, <ext-link ext-link-type="uri" xlink:href="http://www.fil.ion.ucl.ac.uk/spm">http://www.fil.ion.ucl.ac.uk/spm</ext-link>) and MATLAB 2018b (Math Works, Natick, MAUSA). The first 10 volumes were discarded due to unsteady magnetization. Slice-timing and realignment were performed. We excluded the subjects whose head motion with translational or rotational motion was higher than 3 mm or 3&#xb0;. Then, data were spatially normalized to the Montreal Neurological Institute template (resampling voxel size = 3 &#xd7; 3 &#xd7; 3 mm<sup>3</sup>), detrended, and filtered (0.01&#x2013;0.08 Hz). Image volumes with frame wise displacement (FD) &gt;0.5 mm, as well as 1 back and 2 forward neighbors were scrubbed to further reduce the effect of head motion and were replaced by using the method of spline interpolation. Nuisance covariates were regressed (including Frist on 24 head motion parameters and white matter and cerebrospinal fluid signals), and based on previous studies and experience, whole-brain signals are not recommended to regress (<xref ref-type="bibr" rid="B40">40</xref>); Therefore, we did not perform regression on the global signal.</p>
</sec>
<sec id="s2_4">
<label>2.4</label>
<title>Intrinsic neural timescale map</title>
<p>Building upon a previous study (<xref ref-type="bibr" rid="B23">23</xref>, <xref ref-type="bibr" rid="B41">41</xref>), the preprocessed fMRI data were utilized to assess the INT for each voxel across the whole brain of each participant as follows. First, an autocorrelation function (ACF) of the rs-fMRI signal of each voxel (time bin = TR) was estimated, and then the sum of ACF values in the initial period where the ACF values were positive was calculated. The upper limit of this period was set at the point where the ACF reached zero for the first time. After repeating this procedure for every voxel, the brain map was spatially smoothed (FWHM = 6 mm) to improve the signal-to-noise ratio, and a Z-transformed brain map was obtained to eliminate individual differences within groups. This whole-brain map was used as an INT map in which the value at each voxel was equal to the INT of the brain region.</p>
</sec>
<sec id="s2_5">
<label>2.5</label>
<title>Correlations between intrinsic neural timescale and symptom severity</title>
<p>The mean INT values of all voxels within each cluster from the corrected statistical map were calculated, and their associations with clinical measures (ADS, AUDIT, CAGE, OCDS, CIWA-Ar, ASSIST, MAST and MoCA) were assessed.</p>
</sec>
<sec id="s2_6">
<label>2.6</label>
<title>Statistical analysis</title>
<p>A Shapiro&#x2013;Wilk test was used to check the normality of demographic, clinical, and head motion data for each group. The Wilcoxon signed-rank test was used to assess differences of nonnormally distributed data between groups and the <italic>X<sup>2</sup></italic> test was used to compare categorical data between groups with IBM SPSS statistics19.0. Two-sample <italic>t</italic> tests were also performed to compare the group differences in INT between the AUD and HC groups, with age, sex and mean FD as covariates. The statistically significant threshold was set at voxel-wise <italic>P</italic> &lt; 0.005, cluster-wise <italic>P</italic> &lt; 0.05, and the minimum cluster size of 94 voxels after Gaussian random field (GRF) correction. Correlations between intrinsic timescales and clinical scales were assessed using Spearman&#x2019;s rank correlation coefficients for measures that were significantly associations.</p>
</sec>
</sec>
<sec id="s3" sec-type="results">
<label>3</label>
<title>Results</title>
<sec id="s3_1">
<label>3.1</label>
<title>Demographic, clinical and head motion data</title>
<p>For the AUD and HC groups, no significant between-group differences in age (<italic>Z</italic> = -1.696, <italic>P</italic> = 0.09), BMI (<italic>Z</italic> = -1.778, <italic>P</italic> = 0.076) or sex were found (Details in <xref ref-type="table" rid="T1"><bold>Table&#xa0;1</bold></xref>). And we did not detect any significant differences between the groups in terms of mean FD (Z = &#x2212;1.743, P = 0.081) or in the number of image volumes scrubbed (Z = &#x2212;1.166, P = 0.247).</p>
</sec>
<sec id="s3_2">
<label>3.2</label>
<title>Abnormal intrinsic neural timescales between the AUD and HC groups</title>
<p>The AUD group had significantly longer timescales in the left and right thalamus compared with the HC group (<xref ref-type="table" rid="T2"><bold>Table&#xa0;2</bold></xref>; <xref ref-type="fig" rid="f1"><bold>Figure&#xa0;1</bold></xref>). A significantly shorter timescale in the calcarine cortex was also found in the AUD group compared to the HC group (<xref ref-type="table" rid="T2"><bold>Table&#xa0;2</bold></xref>; <xref ref-type="fig" rid="f1"><bold>Figure&#xa0;1</bold></xref>).</p>
<table-wrap id="T2" position="float">
<label>Table&#xa0;2</label>
<caption>
<p>Differences between the AUD and HC groups in the intrinsic neural timescale.</p>
</caption>
<table frame="hsides">
<thead>
<tr>
<th valign="middle" rowspan="2" align="center">Between-group differences</th>
<th valign="middle" rowspan="2" align="center">Cluster</th>
<th valign="middle" rowspan="2" align="center">Regions</th>
<th valign="middle" rowspan="2" align="center">Hemisphere</th>
<th valign="middle" rowspan="2" align="center">Cluster size (voxels)</th>
<th valign="middle" colspan="3" align="center">Peak MNI coordinate</th>
<th valign="middle" rowspan="2" align="center">Peak <italic>F</italic> values</th>
</tr>
<tr>
<th valign="middle" align="center">X</th>
<th valign="middle" align="center">Y</th>
<th valign="middle" align="center">Z</th>
</tr>
</thead>
<tbody>
<tr>
<td valign="middle" align="center">AUD &gt; HC</td>
<td valign="middle" align="center">1</td>
<td valign="middle" align="center">Thalamus</td>
<td valign="middle" align="center">L</td>
<td valign="middle" align="center">52</td>
<td valign="middle" align="center">-9</td>
<td valign="middle" align="center">-21</td>
<td valign="middle" align="center">18</td>
<td valign="middle" align="center">5.10</td>
</tr>
<tr>
<td valign="middle" align="center"/>
<td valign="middle" align="center">2</td>
<td valign="middle" align="center">Thalamus</td>
<td valign="middle" align="center">R</td>
<td valign="middle" align="center">87</td>
<td valign="middle" align="center">15</td>
<td valign="middle" align="center">-27</td>
<td valign="middle" align="center">15</td>
<td valign="middle" align="center">5.11</td>
</tr>
<tr>
<td valign="middle" align="center">AUD &lt; HC</td>
<td valign="middle" align="center">3</td>
<td valign="middle" align="center">Calcarine cortex</td>
<td valign="middle" align="center">R</td>
<td valign="middle" align="center">56</td>
<td valign="middle" align="center">33</td>
<td valign="middle" align="center">60</td>
<td valign="middle" align="center">21</td>
<td valign="middle" align="center">4.34</td>
</tr>
</tbody>
</table>
<table-wrap-foot>
<fn>
<p>AUD, alcohol use disorder; L, left; HC, healthy control; MNI, Montreal Neurological Institute; R, right.</p></fn>
</table-wrap-foot>
</table-wrap>
<fig id="f1" position="float">
<label>Figure&#xa0;1</label>
<caption>
<p>AUD showed significant differences in INT compared to healthy subjects. Areas of increased INT are shown in red. Areas of decreased INT are shown in blue. AUD, alcohol use disorder; INT, intrinsic neural timescale.</p>
</caption>
<graphic mimetype="image" mime-subtype="tiff" xlink:href="fpsyt-17-1736813-g001.tif">
<alt-text content-type="machine-generated">Four MRI brain scan sections display color-coded regions overlaid on grayscale anatomical images, highlighting areas of activation or deactivation. A vertical color bar ranges from blue at -4.69, through cyan and red, to yellow at 5.11.</alt-text>
</graphic></fig>
</sec>
<sec id="s3_3">
<label>3.3</label>
<title>Correlations between intrinsic neural timescale and symptom severity in the AUD group</title>
<p>After correlating the mean intrinsic timescale values derived for all voxels within each cluster with clinical measures, we found that correlations between intrinsic timescales and clinical measures in alcohol-dependent patients The INT of the left thalamus was positively correlated with drinking duration (<italic>r</italic> = 0.568, <italic>P</italic> = 0.001), and the INT of the right thalamus was positively correlated with drinking duration (<italic>r</italic> = 0.658, <italic>P</italic> = 0.0001). The INT of the left thalamus was positively correlated with ASSIST score (<italic>r</italic> = 0.389, <italic>P</italic> = 0.034), as was the INT of the right thalamus (<italic>r</italic> = 0.382, <italic>P</italic> = 0.037) (<xref ref-type="fig" rid="f2"><bold>Figure&#xa0;2</bold></xref>).</p>
<fig id="f2" position="float">
<label>Figure&#xa0;2</label>
<caption>
<p>Correlations between intrinsic timescales and clinical measures in alcohol-dependent patients. The intrinsic time scale in the left thalamus was positively correlated (r=0.568, p=0.001) with duration of drink, and the intrinsic timescale in the right thalamus was also positively correlated (r=0.658, p=0.0001) with duration of drink. The intrinsic timescale in the left thalamus was positively correlated (r=0.389, p=0.034) with ASSIST scores, and the intrinsic timescale in the right thalamus was also positively correlated (r=0.382, p=0.037) with ASSIST scores. AUD, alcohol use disorder; ASSIST, alcohol, smoking, and substance use involvement screening test.</p>
</caption>
<graphic mimetype="image" mime-subtype="tiff" xlink:href="fpsyt-17-1736813-g002.tif">
<alt-text content-type="machine-generated">Four scatter plots display positive correlations between intrinsic timescale and two measures&#x2014;duration of drinks (top row) and ASSIST scores (bottom row)&#x2014;for left and right thalamus, with trend lines and reported r and p values indicating statistical significance.</alt-text>
</graphic></fig>
</sec>
</sec>
<sec id="s4" sec-type="discussion">
<label>4</label>
<title>Discussion</title>
<p>In this study, we delved into the INT, which are linked to the functional hierarchy of the brain in individuals with AUD. Through an analysis of the time-dependent magnitude of the autocorrelation function in rs-fMRI data, our research uncovered abnormal INT in the bilateral thalami and the calcarine cortex of male AUD patients. Prior studies have also emphasized the crucial role of the thalamus in addiction research, as it serves as the nexus of numerous brain circuits involved in cognitive functions, emotional processing, and behavioral regulation (<xref ref-type="bibr" rid="B42">42</xref>). Furthermore, our findings indicated a significant correlation between the INT values of bilateral thalami and the duration of alcohol consumption and ASSIST scores. Collectively, these discoveries offer fresh insights into the neuropathological mechanisms of AUD.</p>
<p>In addiction research, it has been demonstrated that exposure to addictive substances leads to an increase in dopamine levels within reward circuits, which encompass the striatum (such as the caudate and pallidum) as well as the lateral and medial PFC (<xref ref-type="bibr" rid="B43">43</xref>). Dopamine connections in the midbrain run from the pallidum to the thalamus and then from the thalamus to the frontal lobes, so that in the thalamus not only existent inputs are included but also output projections (<xref ref-type="bibr" rid="B44">44</xref>). The thalamus plays a central role in perceptual integration, cognition, emotional processing (<xref ref-type="bibr" rid="B45">45</xref>), and executive functioning (<xref ref-type="bibr" rid="B46">46</xref>), acting as a relay station between the striatum and the cortex (<xref ref-type="bibr" rid="B47">47</xref>). Individuals facing challenges with emotional regulation often resort to inappropriate behaviors to avoid or alleviate negative emotions, potentially leading to the development of psychopathology (<xref ref-type="bibr" rid="B48">48</xref>, <xref ref-type="bibr" rid="B49">49</xref>). Thus, individuals with AUD may turn to alcohol consumption when experiencing negative emotions as a means of adapting to adversity and seeking relief from emotional distress (<xref ref-type="bibr" rid="B50">50</xref>, <xref ref-type="bibr" rid="B51">51</xref>). This is also consistent with previous research. Simultaneously, the thalamus monitors prefrontal activity through thalamocortical inputs, and then integrates this information with signals from the automaton and sensorimotor systems (<xref ref-type="bibr" rid="B52">52</xref>). Alterations in thalamocortical circuitry may consequently disrupt the integration of motivational and sensorimotor information in individuals with AUD, potentially impairing their goal-directed systems and leading to heightened reliance on habitual systems. Past studies have described changes in brain signaling over time in AUD subjects through rs-fMRI studies, examining not only local functional connectivity but also long-range connectivity. ReHo analysis is commonly used to estimate local functional connectivity, while resting state functional connectivity (rs-FC) analysis is used to estimate long-range connectivity (<xref ref-type="bibr" rid="B53">53</xref>). The studies found that abnormalities in local and remote connectivity were found in the frontal gyrus, cingulate cortex, caudate nucleus, thalamus, temporal gyrus, occipital gyrus, and cerebellum-cerebellum (<xref ref-type="bibr" rid="B54">54</xref>&#x2013;<xref ref-type="bibr" rid="B57">57</xref>). The INT in a particular brain region of an AUD patient, whether shorter or longer, corresponds to a shorter or longer duration for the patient to store neural information in that region. This may help to explain why patients with AUD are more prompt and persistent in their engagement with alcohol-related stimuli (<xref ref-type="bibr" rid="B24">24</xref>, <xref ref-type="bibr" rid="B25">25</xref>, <xref ref-type="bibr" rid="B28">28</xref>), as well as why they might experience exacerbated deficits in inhibiting responses to such stimuli (<xref ref-type="bibr" rid="B58">58</xref>). Abnormal signals in these regions may indicate that there is random activity in the brain, causing weaker autocorrelation, which may be responsible for the phenomenon described above.</p>
<p>In addition, excessive alcohol consumption has been shown to affect various aspects of visual processing such as visual short-term memory, depth perception, contrast sensitivity, visual distractor attention, spatial information processing, and visual acuity to moving stimuli (<xref ref-type="bibr" rid="B59">59</xref>). The calcarine cortex plays an important role in visual information integration and attentional processing, and the calcarine cortex is part of the visual attention network (<xref ref-type="bibr" rid="B60">60</xref>, <xref ref-type="bibr" rid="B61">61</xref>). Previous studies have also demonstrated the presence of extensive structural and functional alterations in the visual network in subjects with AUD, resulting in a decrease in visual function pairs (<xref ref-type="bibr" rid="B9">9</xref>, <xref ref-type="bibr" rid="B59">59</xref>, <xref ref-type="bibr" rid="B62">62</xref>). As with the above, our findings suggest that AUD subjects exhibit lower INT in the calcarine cortex, which is involved in the visual network, which may be explained by the fact that AUD can have deleterious effects on visual function. Previous reports have shown the existence of top-down attentional bias mechanisms in visual cortex (<xref ref-type="bibr" rid="B63">63</xref>). Based on the hypothesis that the dopamine system also has the capacity to draw attention to salient stimuli (<xref ref-type="bibr" rid="B64">64</xref>), substance-addicted individuals may exhibit changes in attentional processing when confronted with alcohol-related or drug-related cues. Extensive research suggests that substance-dependent individuals who allocate attention to substance-related cues at the expense of other environmental information and/or in the presence of alcohol- or drug-related cues will experience disruptions in their ability to focus attention on other stimuli (<xref ref-type="bibr" rid="B65">65</xref>). Attentional bias to alcohol-related cues can be observed in alcohol-dependent patients and social drinkers (<xref ref-type="bibr" rid="B66">66</xref>). In our study, reduced intrinsic timescales in the calcarine cortex implied lower levels of neural hierarchy, more randomized brain activity, and more pronounced stimulation of environmental changes, potentially suggesting a decline in visual skills in the visual network of alcohol-dependent patients.</p>
<p>Of note, our results found that alterations in the INT of the bilateral thalamus may be related to the clinical outcome of patients with AUD, as both INT values of the bilateral thalamus were positively correlated with the ASSIST score. This means that the higher the INT values, the higher the ASSIST scores of the patients, indicating a higher degree of risk of alcohol for AUD subjects. Overall, ASSIST scores may be the explanation for achieving and maintaining abstinence in AUD subjects, contributing to future research on AUD.</p>
<p>The functional hierarchy of the brain involves multiple systems in the brain, and abnormal intrinsic timescales of multiple systems in the AUD may also refer to abnormal functional hierarchies of the brain. Abnormal intrinsic timescales have also been found in several neurological or psychiatric disorders, such as in studies of schizophrenia (<xref ref-type="bibr" rid="B67">67</xref>), autism (<xref ref-type="bibr" rid="B23">23</xref>), epilepsy (<xref ref-type="bibr" rid="B68">68</xref>), and depression (<xref ref-type="bibr" rid="B69">69</xref>), all of which suggest that intrinsic timescales may bring new explanations for abnormal localized neurodynamics in the brains of patients with certain disorders. We therefore suggest that intrinsic timescales may also be indicators that can be considered for exploring neural substrates.</p>
<p>Additionally, INT abnormalities may provide valuable neuroimaging targets for clinical assessment and treatment monitoring of AUD. This study demonstrates that bilateral thalamic INT prolongation positively correlates with drinking duration and ASSIST scores. If this finding proves consistent, it could partially address the subjective limitations of existing scales, potentially establishing it as an objective biomarker for assessing AUD severity. And as a central hub of reward circuits and cognitive control networks, thalamic INT abnormalities may reflect patients&#x2019; attentional bias toward alcohol-related cues and deficits in impulse control. This characteristic could provide potential targets for developing personalized follow-up and intervention strategies for patients post-treatment.</p>
<p>However, current research is limited to male participants, and our findings should not be directly generalized to female patients with AUD. A growing body of evidence highlights gender-specific neurobiological differences in alcohol dependence: for example, a study by the ENIGMA Addiction Working Group (<xref ref-type="bibr" rid="B12">12</xref>) demonstrated that male and female individuals with alcohol use disorder exhibit distinct gray matter alterations in the hippocampus and amygdala&#x2014;key regions involved in reward processing and emotional regulation. Sex differences in dopamine system function may also contribute to divergent neural responses to alcohol exposure (<xref ref-type="bibr" rid="B43">43</xref>). Additionally, hormonal fluctuations in women, such as estrogen-related dopaminergic neuromodulation in alcohol responses (<xref ref-type="bibr" rid="B70">70</xref>), may further alter INT and its association with the severity of alcohol use disorder. These sex-specific neurobiological characteristics suggest that the abnormal intrinsic neural timescale patterns observed in the bilateral thalamus and cingulate cortex may not fully reflect the neural mechanisms underlying alcohol use disorder in women. Future studies should incorporate female cohorts to validate and extend our findings.</p>
<sec id="s4_1">
<label>4.1</label>
<title>Limitations</title>
<p>This study does have some limitations. Firstly, the small sample size may potentially reduce the persuasiveness of the findings. Additionally, the study&#x2019;s subjects consisted solely of male Chinese patients, so this study doesn&#x2019;t cover the entire spectrum of individuals with alcohol consumption habits. Future research should therefore employ gender-balanced designs to investigate whether abnormalities in the INT during AUD exhibit gender-specific patterns. Finally, the current study is cross-sectional in nature. Moving forward, it is essential to incorporate longitudinal data to complement and further understand the alterations in the INT of the brain in individuals with alcohol consumption habits.</p>
</sec>
<sec id="s4_2" sec-type="conclusions">
<label>4.2</label>
<title>Conclusion</title>
<p>In conclusion, our study identifies abnormalities in brain activity in AUD patients through an intrinsic time-scale approach. We found a higher INT in bilateral thalami and a shorter INT l in the calcarine cortex in male AUD patients compared to non-drinkers, which may indicate decreased functioning of male AUD patients in the involvement of the reward network and the visual attention network, which may play an important role in the understanding of failure to abstain from alcohol in AUD subjects. In summary, exploring the changes in neural activity of male AUD patients in the resting state by means of this index may provide a deeper understanding of the neural mechanisms of alcohol dependence.</p>
</sec>
</sec>
</body>
<back>
<sec id="s5" sec-type="data-availability">
<title>Data availability statement</title>
<p>The original contributions presented in the study are included in the article/supplementary files, further inquiries can be directed to the corresponding author/s.</p></sec>
<sec id="s6" sec-type="ethics-statement">
<title>Ethics statement</title>
<p>The studies involving humans were approved by the Research Ethics Committee of the First Affiliated Hospital of Zhengzhou University. The studies were conducted in accordance with the local legislation and institutional requirements. Informed consent was taken from all individual participants.</p></sec>
<sec id="s7" sec-type="author-contributions">
<title>Author contributions</title>
<p>WW: Funding acquisition, Resources, Data curation, Writing &#x2013; original draft, Conceptualization. XW: Formal Analysis, Writing &#x2013; original draft, Methodology. YK: Methodology, Formal Analysis, Writing &#x2013; original draft, Visualization. WL: Investigation, Software, Formal Analysis, Writing &#x2013; original draft. YG: Investigation, Formal Analysis, Writing &#x2013; original draft, Visualization. HZ: Investigation, Writing &#x2013; original draft, Software, Formal Analysis. JT: Visualization, Software, Investigation, Writing &#x2013; original draft. LM: Software, Validation, Writing &#x2013; original draft, Data curation. BM: Software, Validation, Writing &#x2013; original draft, Data curation. MZ: Data curation, Validation, Writing &#x2013; review &amp; editing, Methodology. YW: Writing &#x2013; review &amp; editing, Supervision, Validation, Conceptualization, Project administration. YZ: Project administration, Supervision, Conceptualization, Resources, Writing &#x2013; review &amp; editing.</p></sec>
<ack>
<title>Acknowledgments</title>
<p>Thanks to all participants and investigators.</p>
</ack>
<sec id="s9" sec-type="COI-statement">
<title>Conflict of interest</title>
<p>The author(s) declared that this work was conducted in the absence of any commercial or financial relationships that could be construed as a potential conflict of interest.</p></sec>
<sec id="s10" sec-type="ai-statement">
<title>Generative AI statement</title>
<p>The author(s) declared that generative AI was not used in the creation of this manuscript.</p>
<p>Any alternative text (alt text) provided alongside figures in this article has been generated by Frontiers with the support of artificial intelligence and reasonable efforts have been made to ensure accuracy, including review by the authors wherever possible. If you identify any issues, please contact us.</p></sec>
<sec id="s11" sec-type="disclaimer">
<title>Publisher&#x2019;s note</title>
<p>All claims expressed in this article are solely those of the authors and do not necessarily represent those of their affiliated organizations, or those of the publisher, the editors and the reviewers. Any product that may be evaluated in this article, or claim that may be made by its manufacturer, is not guaranteed or endorsed by the publisher.</p></sec>
<ref-list>
<title>References</title>
<ref id="B1">
<label>1</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Murray</surname> <given-names>CJ</given-names></name>
<name><surname>Lopez</surname> <given-names>AD</given-names></name>
</person-group>. 
<article-title>Evidence-based health policy&#x2013;lessons from the Global Burden of Disease Study</article-title>. <source>Science</source>. (<year>1996</year>) <volume>274</volume>:<page-range>740&#x2013;3</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1126/science.274.5288.740</pub-id>, PMID: <pub-id pub-id-type="pmid">8966556</pub-id>
</mixed-citation>
</ref>
<ref id="B2">
<label>2</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Connor</surname> <given-names>JP</given-names></name>
<name><surname>Haber</surname> <given-names>PS</given-names></name>
<name><surname>Hall</surname> <given-names>WD</given-names></name>
</person-group>. 
<article-title>Alcohol use disorders</article-title>. <source>Lancet</source>. (<year>2016</year>) <volume>387</volume>:<page-range>988&#x2013;98</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1016/S0140-6736(15)00122-1</pub-id>, PMID: <pub-id pub-id-type="pmid">26343838</pub-id>
</mixed-citation>
</ref>
<ref id="B3">
<label>3</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Schuckit</surname> <given-names>MA</given-names></name>
</person-group>. 
<article-title>Alcohol-use disorders</article-title>. <source>Lancet Lond Engl</source>. (<year>2009</year>) <volume>373</volume>:<fpage>492</fpage>&#x2013;<lpage>501</lpage>. doi:&#xa0;<pub-id pub-id-type="doi">10.1016/S0140-6736(09)60009-X</pub-id>, PMID: <pub-id pub-id-type="pmid">19168210</pub-id>
</mixed-citation>
</ref>
<ref id="B4">
<label>4</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Boothby</surname> <given-names>LA</given-names></name>
<name><surname>Doering</surname> <given-names>PL</given-names></name>
</person-group>. 
<article-title>Acamprosate for the treatment of alcohol dependence</article-title>. <source>Clin Ther</source>. (<year>2005</year>) <volume>27</volume>:<fpage>695</fpage>&#x2013;<lpage>714</lpage>. doi:&#xa0;<pub-id pub-id-type="doi">10.1016/j.clinthera.2005.06.015</pub-id>, PMID: <pub-id pub-id-type="pmid">16117977</pub-id>
</mixed-citation>
</ref>
<ref id="B5">
<label>5</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Walter</surname> <given-names>M</given-names></name>
<name><surname>D&#xfc;rsteler</surname> <given-names>KM</given-names></name>
<name><surname>Petitjean</surname> <given-names>SA</given-names></name>
<name><surname>Wiesbeck</surname> <given-names>GA</given-names></name>
<name><surname>Euler</surname> <given-names>S</given-names></name>
<name><surname>Sollberger</surname> <given-names>D</given-names></name>
<etal/>
</person-group>. 
<article-title>Psychosocial treatment of addictive disorders&#x2013;an overview of psychotherapeutic options and their efficacy</article-title>. <source>Fortschr Neurol Psychiatr</source>. (<year>2015</year>) <volume>83</volume>:<page-range>201&#x2013;10</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1055/s-0034-1399338</pub-id>, PMID: <pub-id pub-id-type="pmid">25893493</pub-id>
</mixed-citation>
</ref>
<ref id="B6">
<label>6</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Weisner</surname> <given-names>C</given-names></name>
<name><surname>Matzger</surname> <given-names>H</given-names></name>
<name><surname>Kaskutas</surname> <given-names>LA</given-names></name>
</person-group>. 
<article-title>How important is treatment? One-year outcomes of treated and untreated alcohol-dependent individuals: One-year outcomes of treated and untreated alcohol-dependent individuals</article-title>. <source>Addiction</source>. (<year>2003</year>) <volume>98</volume>:<page-range>901&#x2013;11</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1046/j.1360-0443.2003.00438.x</pub-id>, PMID: <pub-id pub-id-type="pmid">12814496</pub-id>
</mixed-citation>
</ref>
<ref id="B7">
<label>7</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Ray</surname> <given-names>LA</given-names></name>
<name><surname>Mackillop</surname> <given-names>J</given-names></name>
<name><surname>Monti</surname> <given-names>PM</given-names></name>
</person-group>. 
<article-title>Subjective responses to alcohol consumption as endophenotypes: advancing behavioral genetics in etiological and treatment models of alcoholism</article-title>. <source>Subst Use Misuse</source>. (<year>2010</year>) <volume>45</volume>:<page-range>1742&#x2013;65</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.3109/10826084.2010.482427</pub-id>, PMID: <pub-id pub-id-type="pmid">20590398</pub-id>
</mixed-citation>
</ref>
<ref id="B8">
<label>8</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Cao</surname> <given-names>HL</given-names></name>
<name><surname>Wei</surname> <given-names>W</given-names></name>
<name><surname>Meng</surname> <given-names>YJ</given-names></name>
<name><surname>Deng</surname> <given-names>W</given-names></name>
<name><surname>Li</surname> <given-names>T</given-names></name>
<name><surname>Li</surname> <given-names>ML</given-names></name>
<etal/>
</person-group>. 
<article-title>Disrupted white matter structural networks in individuals with alcohol dependence</article-title>. <source>J Psychiatr Res</source>. (<year>2023</year>) <volume>168</volume>:<fpage>13</fpage>&#x2013;<lpage>21</lpage>. doi:&#xa0;<pub-id pub-id-type="doi">10.1016/j.jpsychires.2023.10.019</pub-id>, PMID: <pub-id pub-id-type="pmid">37871461</pub-id>
</mixed-citation>
</ref>
<ref id="B9">
<label>9</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Ruan</surname> <given-names>X</given-names></name>
<name><surname>Song</surname> <given-names>Z</given-names></name>
<name><surname>Zhang</surname> <given-names>J</given-names></name>
<name><surname>Yu</surname> <given-names>T</given-names></name>
<name><surname>Chen</surname> <given-names>J</given-names></name>
<name><surname>Zhou</surname> <given-names>T</given-names></name>
</person-group>. 
<article-title>Alterations of brain activity in patients with alcohol use disorder: a resting-state fMRI study</article-title>. <source>BMC Psychiatry</source>. (<year>2023</year>) <volume>23</volume>:<fpage>894</fpage>. doi:&#xa0;<pub-id pub-id-type="doi">10.1186/s12888-023-05361-z</pub-id>, PMID: <pub-id pub-id-type="pmid">38037006</pub-id>
</mixed-citation>
</ref>
<ref id="B10">
<label>10</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>B&#xf6;hmer</surname> <given-names>J</given-names></name>
<name><surname>Reinhardt</surname> <given-names>P</given-names></name>
<name><surname>Garbusow</surname> <given-names>M</given-names></name>
<name><surname>Marxen</surname> <given-names>M</given-names></name>
<name><surname>Smolka</surname> <given-names>MN</given-names></name>
<name><surname>Zimmermann</surname> <given-names>US</given-names></name>
<etal/>
</person-group>. 
<article-title>Aberrant functional brain network organization is associated with relapse during 1-year follow-up in alcohol-dependent patients</article-title>. <source>Addict Biol</source>. (<year>2023</year>) <volume>28</volume>:<fpage>e13339</fpage>. doi:&#xa0;<pub-id pub-id-type="doi">10.1111/adb.13339</pub-id>, PMID: <pub-id pub-id-type="pmid">37855075</pub-id>
</mixed-citation>
</ref>
<ref id="B11">
<label>11</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Li</surname> <given-names>L</given-names></name>
<name><surname>Yu</surname> <given-names>H</given-names></name>
<name><surname>Liu</surname> <given-names>Y</given-names></name>
<name><surname>Meng</surname> <given-names>Yj</given-names></name>
<name><surname>Li</surname> <given-names>Xj</given-names></name>
<name><surname>Zhang</surname> <given-names>C</given-names></name>
<etal/>
</person-group>. 
<article-title>Lower regional grey matter in alcohol use disorders: evidence from a voxel-based meta-analysis</article-title>. <source>BMC Psychiatry</source>. (<year>2021</year>) <volume>21</volume>:<fpage>247</fpage>. doi:&#xa0;<pub-id pub-id-type="doi">10.1186/s12888-021-03244-9</pub-id>, PMID: <pub-id pub-id-type="pmid">33975595</pub-id>
</mixed-citation>
</ref>
<ref id="B12">
<label>12</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Grace</surname> <given-names>S</given-names></name>
<name><surname>Rossetti</surname> <given-names>MG</given-names></name>
<name><surname>Allen</surname> <given-names>N</given-names></name>
<name><surname>Batalla</surname> <given-names>A</given-names></name>
<name><surname>Bellani</surname> <given-names>M</given-names></name>
<name><surname>Brambilla</surname> <given-names>P</given-names></name>
<etal/>
</person-group>. 
<article-title>Sex differences in the neuroanatomy of alcohol dependence: hippocampus and amygdala subregions in a sample of 966 people from the ENIGMA Addiction Working Group</article-title>. <source>Transl Psychiatry</source>. (<year>2021</year>) <volume>11</volume>:<fpage>156</fpage>. doi:&#xa0;<pub-id pub-id-type="doi">10.1038/s41398-021-01204-1</pub-id>, PMID: <pub-id pub-id-type="pmid">33664226</pub-id>
</mixed-citation>
</ref>
<ref id="B13">
<label>13</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Liao</surname> <given-names>W</given-names></name>
<name><surname>Li</surname> <given-names>J</given-names></name>
<name><surname>Ji</surname> <given-names>GJ</given-names></name>
<name><surname>Wu</surname> <given-names>GR</given-names></name>
<name><surname>Long</surname> <given-names>Z</given-names></name>
<name><surname>Xu</surname> <given-names>Q</given-names></name>
<etal/>
</person-group>. 
<article-title>Endless fluctuations: temporal dynamics of the amplitude of low frequency fluctuations</article-title>. <source>IEEE Trans Med Imaging</source>. (<year>2019</year>) <volume>38</volume>:<page-range>2523&#x2013;32</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1109/TMI.2019.2904555</pub-id>, PMID: <pub-id pub-id-type="pmid">30872224</pub-id>
</mixed-citation>
</ref>
<ref id="B14">
<label>14</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Xue</surname> <given-names>K</given-names></name>
<name><surname>Liang</surname> <given-names>S</given-names></name>
<name><surname>Yang</surname> <given-names>B</given-names></name>
<name><surname>Zhu</surname> <given-names>D</given-names></name>
<name><surname>Xie</surname> <given-names>Y</given-names></name>
<name><surname>Qin</surname> <given-names>W</given-names></name>
<etal/>
</person-group>. 
<article-title>Local dynamic spontaneous brain activity changes in first-episode, treatment-na&#xef;ve patients with major depressive disorder and their associated gene expression profiles</article-title>. <source>Psychol Med</source>. (<year>2022</year>) <volume>52</volume>:<page-range>2052&#x2013;61</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1017/S0033291720003876</pub-id>, PMID: <pub-id pub-id-type="pmid">33121546</pub-id>
</mixed-citation>
</ref>
<ref id="B15">
<label>15</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Cui</surname> <given-names>Q</given-names></name>
<name><surname>Sheng</surname> <given-names>W</given-names></name>
<name><surname>Chen</surname> <given-names>Y</given-names></name>
<name><surname>Pang</surname> <given-names>Y</given-names></name>
<name><surname>Lu</surname> <given-names>F</given-names></name>
<name><surname>Tang</surname> <given-names>Q</given-names></name>
<etal/>
</person-group>. 
<article-title>Dynamic changes of amplitude of low-frequency fluctuations in patients with generalized anxiety disorder</article-title>. <source>Hum Brain Mapp</source>. (<year>2020</year>) <volume>41</volume>:<page-range>1667&#x2013;76</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1002/hbm.24902</pub-id>, PMID: <pub-id pub-id-type="pmid">31849148</pub-id>
</mixed-citation>
</ref>
<ref id="B16">
<label>16</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Wen</surname> <given-names>M</given-names></name>
<name><surname>Yang</surname> <given-names>Z</given-names></name>
<name><surname>Wei</surname> <given-names>Y</given-names></name>
<name><surname>Huang</surname> <given-names>H</given-names></name>
<name><surname>Zheng</surname> <given-names>R</given-names></name>
<name><surname>Wang</surname> <given-names>W</given-names></name>
<etal/>
</person-group>. 
<article-title>More than just statics: Temporal dynamic changes of intrinsic brain activity in cigarette smoking</article-title>. <source>Addict Biol</source>. (<year>2021</year>) <volume>26</volume>:<fpage>e13050</fpage>. doi:&#xa0;<pub-id pub-id-type="doi">10.1111/adb.13050</pub-id>, PMID: <pub-id pub-id-type="pmid">34085358</pub-id>
</mixed-citation>
</ref>
<ref id="B17">
<label>17</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Xue</surname> <given-names>T</given-names></name>
<name><surname>Dong</surname> <given-names>F</given-names></name>
<name><surname>Huang</surname> <given-names>R</given-names></name>
<name><surname>Tao</surname> <given-names>Z</given-names></name>
<name><surname>Tang</surname> <given-names>J</given-names></name>
<name><surname>Cheng</surname> <given-names>Y</given-names></name>
<etal/>
</person-group>. 
<article-title>Dynamic neuroimaging biomarkers of smoking in young smokers</article-title>. <source>Front Psychiatry</source>. (<year>2020</year>) <volume>11</volume>:<elocation-id>663</elocation-id>. doi:&#xa0;<pub-id pub-id-type="doi">10.3389/fpsyt.2020.00663</pub-id>, PMID: <pub-id pub-id-type="pmid">32754067</pub-id>
</mixed-citation>
</ref>
<ref id="B18">
<label>18</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Fu</surname> <given-names>Z</given-names></name>
<name><surname>Tu</surname> <given-names>Y</given-names></name>
<name><surname>Di</surname> <given-names>X</given-names></name>
<name><surname>Du</surname> <given-names>Y</given-names></name>
<name><surname>Pearlson</surname> <given-names>GD</given-names></name>
<name><surname>Turner</surname> <given-names>JA</given-names></name>
<etal/>
</person-group>. 
<article-title>Characterizing dynamic amplitude of low-frequency fluctuation and its relationship with dynamic functional connectivity: An application to schizophrenia</article-title>. <source>NeuroImage</source>. (<year>2018</year>) <volume>180</volume>:<page-range>619&#x2013;31</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1016/j.neuroimage.2017.09.035</pub-id>, PMID: <pub-id pub-id-type="pmid">28939432</pub-id>
</mixed-citation>
</ref>
<ref id="B19">
<label>19</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Lu</surname> <given-names>F</given-names></name>
<name><surname>Zhao</surname> <given-names>Y</given-names></name>
<name><surname>He</surname> <given-names>Z</given-names></name>
<name><surname>Ma</surname> <given-names>X</given-names></name>
<name><surname>Yao</surname> <given-names>X</given-names></name>
<name><surname>Liu</surname> <given-names>P</given-names></name>
<etal/>
</person-group>. 
<article-title>Altered dynamic regional homogeneity in patients with conduct disorder</article-title>. <source>Neuropsychologia</source>. (<year>2021</year>) <volume>157</volume>:<fpage>107865</fpage>. doi:&#xa0;<pub-id pub-id-type="doi">10.1016/j.neuropsychologia.2021.107865</pub-id>, PMID: <pub-id pub-id-type="pmid">33894243</pub-id>
</mixed-citation>
</ref>
<ref id="B20">
<label>20</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Lu</surname> <given-names>F</given-names></name>
<name><surname>Liu</surname> <given-names>P</given-names></name>
<name><surname>Chen</surname> <given-names>H</given-names></name>
<name><surname>Wang</surname> <given-names>M</given-names></name>
<name><surname>Xu</surname> <given-names>S</given-names></name>
<name><surname>Yuan</surname> <given-names>Z</given-names></name>
<etal/>
</person-group>. 
<article-title>More than just statics: Abnormal dynamic amplitude of low-frequency fluctuation in adolescent patients with pure conduct disorder</article-title>. <source>J Psychiatr Res</source>. (<year>2020</year>) <volume>131</volume>:<page-range>60&#x2013;8</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1016/j.jpsychires.2020.08.027</pub-id>, PMID: <pub-id pub-id-type="pmid">32937251</pub-id>
</mixed-citation>
</ref>
<ref id="B21">
<label>21</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Jiang</surname> <given-names>S</given-names></name>
<name><surname>Luo</surname> <given-names>C</given-names></name>
<name><surname>Huang</surname> <given-names>Y</given-names></name>
<name><surname>Li</surname> <given-names>Z</given-names></name>
<name><surname>Chen</surname> <given-names>Y</given-names></name>
<name><surname>Li</surname> <given-names>X</given-names></name>
<etal/>
</person-group>. 
<article-title>Altered static and dynamic spontaneous neural activity in drug-na&#xef;ve and drug-receiving benign childhood epilepsy with centrotemporal spikes</article-title>. <source>Front Hum Neurosci</source>. (<year>2020</year>) <volume>14</volume>:<elocation-id>361</elocation-id>. doi:&#xa0;<pub-id pub-id-type="doi">10.3389/fnhum.2020.00361</pub-id>, PMID: <pub-id pub-id-type="pmid">33005141</pub-id>
</mixed-citation>
</ref>
<ref id="B22">
<label>22</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Vergara</surname> <given-names>VM</given-names></name>
<name><surname>Weiland</surname> <given-names>BJ</given-names></name>
<name><surname>Hutchison</surname> <given-names>KE</given-names></name>
<name><surname>Calhoun</surname> <given-names>VD</given-names></name>
</person-group>. 
<article-title>The impact of combinations of alcohol, nicotine, and cannabis on dynamic brain connectivity</article-title>. <source>Neuropsychopharmacology</source>. (<year>2018</year>) <volume>43</volume>:<page-range>877&#x2013;90</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1038/npp.2017.280</pub-id>, PMID: <pub-id pub-id-type="pmid">29134961</pub-id>
</mixed-citation>
</ref>
<ref id="B23">
<label>23</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Watanabe</surname> <given-names>T</given-names></name>
<name><surname>Rees</surname> <given-names>G</given-names></name>
<name><surname>Masuda</surname> <given-names>N</given-names></name>
</person-group>. 
<article-title>Atypical intrinsic neural timescale in autism</article-title>. <source>eLife</source>. (<year>2019</year>) <volume>8</volume>:<fpage>e42256</fpage>. doi:&#xa0;<pub-id pub-id-type="doi">10.7554/eLife.42256</pub-id>, PMID: <pub-id pub-id-type="pmid">30717827</pub-id>
</mixed-citation>
</ref>
<ref id="B24">
<label>24</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Chaudhuri</surname> <given-names>R</given-names></name>
<name><surname>Knoblauch</surname> <given-names>K</given-names></name>
<name><surname>Gariel</surname> <given-names>MA</given-names></name>
<name><surname>Kennedy</surname> <given-names>H</given-names></name>
<name><surname>Wang</surname> <given-names>XJ</given-names></name>
</person-group>. 
<article-title>A large-scale circuit mechanism for hierarchical dynamical processing in the primate cortex</article-title>. <source>Neuron</source>. (<year>2015</year>) <volume>88</volume>:<page-range>419&#x2013;31</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1016/j.neuron.2015.09.008</pub-id>, PMID: <pub-id pub-id-type="pmid">26439530</pub-id>
</mixed-citation>
</ref>
<ref id="B25">
<label>25</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Chen</surname> <given-names>J</given-names></name>
<name><surname>Hasson</surname> <given-names>U</given-names></name>
<name><surname>Honey</surname> <given-names>CJ</given-names></name>
</person-group>. 
<article-title>Processing timescales as an organizing principle for primate cortex</article-title>. <source>Neuron</source>. (<year>2015</year>) <volume>88</volume>:<page-range>244&#x2013;6</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1016/j.neuron.2015.10.010</pub-id>, PMID: <pub-id pub-id-type="pmid">26494274</pub-id>
</mixed-citation>
</ref>
<ref id="B26">
<label>26</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Cocchi</surname> <given-names>L</given-names></name>
<name><surname>Sale MV</surname> <given-names>L</given-names></name>
<name><surname>Gollo</surname> <given-names>L</given-names></name>
<name><surname>Bell</surname> <given-names>PT</given-names></name>
<name><surname>Nguyen</surname> <given-names>VT</given-names></name>
<name><surname>Zalesky</surname> <given-names>A</given-names></name>
<etal/>
</person-group>. 
<article-title>A hierarchy of timescales explains distinct effects of local inhibition of primary visual cortex and frontal eye fields</article-title>. <source>eLife</source>. (<year>2016</year>) :<fpage>5: e15252</fpage>. doi:&#xa0;<pub-id pub-id-type="doi">10.7554/eLife.15252.024</pub-id>, PMID: <pub-id pub-id-type="pmid">27596931</pub-id>
</mixed-citation>
</ref>
<ref id="B27">
<label>27</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Friston</surname> <given-names>K</given-names></name>
<name><surname>Kiebel</surname> <given-names>S</given-names></name>
</person-group>. 
<article-title>Predictive coding under the free-energy principle</article-title>. <source>Philos Trans R Soc B Biol Sci</source>. (<year>2009</year>) <volume>364</volume>:<page-range>1211&#x2013;21</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1098/rstb.2008.0300</pub-id>, PMID: <pub-id pub-id-type="pmid">19528002</pub-id>
</mixed-citation>
</ref>
<ref id="B28">
<label>28</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Gollo</surname> <given-names>LL</given-names></name>
<name><surname>Zalesky</surname> <given-names>A</given-names></name>
<name><surname>Hutchison</surname> <given-names>RM</given-names></name>
<name><surname>Van Den Heuvel</surname> <given-names>M</given-names></name>
<name><surname>Breakspear</surname> <given-names>M</given-names></name>
</person-group>. 
<article-title>Dwelling quietly in the rich club: brain network determinants of slow cortical fluctuations</article-title>. <source>Philos Trans R Soc B Biol Sci</source>. (<year>2015</year>) <volume>370</volume>:<fpage>20140165</fpage>. doi:&#xa0;<pub-id pub-id-type="doi">10.1098/rstb.2014.0165</pub-id>, PMID: <pub-id pub-id-type="pmid">25823864</pub-id>
</mixed-citation>
</ref>
<ref id="B29">
<label>29</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Hasson</surname> <given-names>U</given-names></name>
<name><surname>Chen</surname> <given-names>J</given-names></name>
<name><surname>Honey</surname> <given-names>CJ</given-names></name>
</person-group>. 
<article-title>Hierarchical process memory: memory as an integral component of information processing</article-title>. <source>Trends Cognit Sci</source>. (<year>2015</year>) <volume>19</volume>:<page-range>304&#x2013;13</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1016/j.tics.2015.04.006</pub-id>, PMID: <pub-id pub-id-type="pmid">25980649</pub-id>
</mixed-citation>
</ref>
<ref id="B30">
<label>30</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Himberger</surname> <given-names>KD</given-names></name>
<name><surname>Chien</surname> <given-names>HY</given-names></name>
<name><surname>Honey</surname> <given-names>CJ</given-names></name>
</person-group>. 
<article-title>Principles of temporal processing across the cortical hierarchy</article-title>. <source>Neuroscience</source>. (<year>2018</year>) <volume>389</volume>:<page-range>161&#x2013;74</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1016/j.neuroscience.2018.04.030</pub-id>, PMID: <pub-id pub-id-type="pmid">29729293</pub-id>
</mixed-citation>
</ref>
<ref id="B31">
<label>31</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Wolff</surname> <given-names>A</given-names></name>
<name><surname>Berberian</surname> <given-names>N</given-names></name>
<name><surname>Golesorkhi</surname> <given-names>M</given-names></name>
<name><surname>Gomez-Pilar</surname> <given-names>J</given-names></name>
<name><surname>Zilio</surname> <given-names>F</given-names></name>
<name><surname>Northoff</surname> <given-names>G</given-names></name>
</person-group>. 
<article-title>Intrinsic neural timescales: temporal integration and segregation</article-title>. <source>Trends Cognit Sci</source>. (<year>2022</year>) <volume>26</volume>:<page-range>159&#x2013;73</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1016/j.tics.2021.11.007</pub-id>, PMID: <pub-id pub-id-type="pmid">34991988</pub-id>
</mixed-citation>
</ref>
<ref id="B32">
<label>32</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Canario</surname> <given-names>E</given-names></name>
<name><surname>Chen</surname> <given-names>D</given-names></name>
<name><surname>Biswal</surname> <given-names>B</given-names></name>
</person-group>. 
<article-title>A review of resting-state fMRI and its use to examine psychiatric disorders</article-title>. <source>Psychoradiology</source>. (<year>2021</year>) <volume>1</volume>:<fpage>42</fpage>&#x2013;<lpage>53</lpage>. doi:&#xa0;<pub-id pub-id-type="doi">10.1093/psyrad/kkab003</pub-id>, PMID: <pub-id pub-id-type="pmid">38665309</pub-id>
</mixed-citation>
</ref>
<ref id="B33">
<label>33</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Lv</surname> <given-names>H</given-names></name>
<name><surname>Wang</surname> <given-names>Z</given-names></name>
<name><surname>Tong</surname> <given-names>E</given-names></name>
<name><surname>Williams</surname> <given-names>LM</given-names></name>
<name><surname>Zaharchuk</surname> <given-names>G</given-names></name>
<name><surname>Zeineh</surname> <given-names>M</given-names></name>
<etal/>
</person-group>. 
<article-title>Resting-state functional MRI: everything that nonexperts have always wanted to know</article-title>. <source>AJNR Am J Neuroradiol</source>. (<year>2018</year>) <volume>39</volume>:<page-range>1390&#x2013;9</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.3174/ajnr.A5527</pub-id>, PMID: <pub-id pub-id-type="pmid">29348136</pub-id>
</mixed-citation>
</ref>
<ref id="B34">
<label>34</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Manea</surname> <given-names>AMG</given-names></name>
<name><surname>Zilverstand</surname> <given-names>A</given-names></name>
<name><surname>Ugurbil</surname> <given-names>K</given-names></name>
<name><surname>Heilbronner</surname> <given-names>SR</given-names></name>
<name><surname>Zimmermann</surname> <given-names>J</given-names></name>
</person-group>. 
<article-title>Intrinsic timescales as an organizational principle of neural processing across the whole rhesus macaque brain</article-title>. <source>Elife</source>. (<year>2022</year>) <volume>11</volume>:<fpage>e75540</fpage>. doi:&#xa0;<pub-id pub-id-type="doi">10.7554/eLife.75540.sa2</pub-id>, PMID: <pub-id pub-id-type="pmid">35234612</pub-id>
</mixed-citation>
</ref>
<ref id="B35">
<label>35</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Wengler</surname> <given-names>K</given-names></name>
<name><surname>Goldberg</surname> <given-names>AT</given-names></name>
<name><surname>Chahine</surname> <given-names>G</given-names></name>
<name><surname>Horga</surname> <given-names>G</given-names></name>
</person-group>. 
<article-title>Distinct hierarchical alterations of intrinsic neural timescales account for different manifestations of psychosis</article-title>. <source>eLife</source>. (<year>2020</year>) <volume>9</volume>:<fpage>e56151</fpage>. doi:&#xa0;<pub-id pub-id-type="doi">10.7554/eLife.56151</pub-id>, PMID: <pub-id pub-id-type="pmid">33107431</pub-id>
</mixed-citation>
</ref>
<ref id="B36">
<label>36</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Joutsa</surname> <given-names>J</given-names></name>
<name><surname>Moussawi</surname> <given-names>K</given-names></name>
<name><surname>Siddiqi</surname> <given-names>SH</given-names></name>
<name><surname>Abdolahi</surname> <given-names>A</given-names></name>
<name><surname>Drew</surname> <given-names>W</given-names></name>
<name><surname>Cohen</surname> <given-names>AL</given-names></name>
<etal/>
</person-group>. 
<article-title>Brain lesions disruption map to a common human brain circuit</article-title>. <source>Nat Med</source>. (<year>2022</year>) <volume>28</volume>:<page-range>1249&#x2013;55</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1038/s41591-022-01834-y</pub-id>, PMID: <pub-id pub-id-type="pmid">35697842</pub-id>
</mixed-citation>
</ref>
<ref id="B37">
<label>37</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Gan</surname> <given-names>Q</given-names></name>
<name><surname>Ding</surname> <given-names>N</given-names></name>
<name><surname>Bi</surname> <given-names>G</given-names></name>
<name><surname>Liu</surname> <given-names>R</given-names></name>
<name><surname>Zhao</surname> <given-names>X</given-names></name>
<name><surname>Zhong</surname> <given-names>J</given-names></name>
<etal/>
</person-group>. 
<article-title>Enhanced resting-state functional connectivity with decreased amplitude of low-frequency fluctuations of the salience network in mindfulness novices</article-title>. <source>Front Hum Neurosci</source>. (<year>2022</year>) <volume>16</volume>:<elocation-id>838123</elocation-id>. doi:&#xa0;<pub-id pub-id-type="doi">10.3389/fnhum.2022.838123</pub-id>, PMID: <pub-id pub-id-type="pmid">35308619</pub-id>
</mixed-citation>
</ref>
<ref id="B38">
<label>38</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Stautz</surname> <given-names>K</given-names></name>
<name><surname>Bignardi</surname> <given-names>G</given-names></name>
<name><surname>Hollands</surname> <given-names>GJ</given-names></name>
<name><surname>Marteau</surname> <given-names>TM</given-names></name>
</person-group>. 
<article-title>Reactions on Twitter to updated alcohol guidelines in the UK: a content analysis</article-title>. <source>BMJ Open</source>. (<year>2017</year>) <volume>7</volume>:<fpage>e015493</fpage>. doi:&#xa0;<pub-id pub-id-type="doi">10.1136/bmjopen-2016-015493</pub-id>, PMID: <pub-id pub-id-type="pmid">28246145</pub-id>
</mixed-citation>
</ref>
<ref id="B39">
<label>39</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Yan</surname> <given-names>CG</given-names></name>
<name><surname>Wang</surname> <given-names>XD</given-names></name>
<name><surname>Zuo</surname> <given-names>XN</given-names></name>
<name><surname>Zang</surname> <given-names>YF</given-names></name>
</person-group>. 
<article-title>DPABI: data processing &amp; Analysis for (Resting-state) brain imaging</article-title>. <source>Neuroinformatics</source>. (<year>2016</year>) <volume>14</volume>:<page-range>339&#x2013;51</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1007/s12021-016-9299-4</pub-id>, PMID: <pub-id pub-id-type="pmid">27075850</pub-id>
</mixed-citation>
</ref>
<ref id="B40">
<label>40</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Yang</surname> <given-names>GJ</given-names></name>
<name><surname>Murray</surname> <given-names>JD</given-names></name>
<name><surname>Glasser</surname> <given-names>M</given-names></name>
<name><surname>Pearlson</surname> <given-names>GD</given-names></name>
<name><surname>Krystal</surname> <given-names>JH</given-names></name>
<name><surname>Schleifer</surname> <given-names>C</given-names></name>
<etal/>
</person-group>. 
<article-title>Altered global signal topography in schizophrenia</article-title>. <source>Cereb Cortex</source>. (<year>2017</year>) <volume>27</volume>:<page-range>5156&#x2013;69</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1093/cercor/bhw297</pub-id>, PMID: <pub-id pub-id-type="pmid">27702810</pub-id>
</mixed-citation>
</ref>
<ref id="B41">
<label>41</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Wei</surname> <given-names>Y</given-names></name>
<name><surname>Zhang</surname> <given-names>C</given-names></name>
<name><surname>Peng</surname> <given-names>Y</given-names></name>
<name><surname>Chen</surname></name>
<name><surname>Han</surname> <given-names>S</given-names></name>
<name><surname>Wang</surname> <given-names>W</given-names></name>
<etal/>
</person-group>. 
<article-title>MRI assessment of intrinsic neural timescale and gray matter volume in parkinson&#x2019;s disease</article-title>. <source>J Magn Reson Imaging</source>. (<year>2024</year>) <volume>59</volume>:<page-range>987&#x2013;95</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1002/jmri.28864</pub-id>, PMID: <pub-id pub-id-type="pmid">37318377</pub-id>
</mixed-citation>
</ref>
<ref id="B42">
<label>42</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Biesbroek</surname> <given-names>JM</given-names></name>
<name><surname>Verhagen</surname> <given-names>MG</given-names></name>
<name><surname>van der Stigchel</surname> <given-names>S</given-names></name>
<name><surname>Biessels</surname> <given-names>GJ</given-names></name>
</person-group>. 
<article-title>When the central integrator disintegrates: A review of the role of the thalamus in cognition and dementia</article-title>. <source>Alzheimers Dement</source>. (<year>2024</year>) <volume>20</volume>:<page-range>2209&#x2013;22</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1002/alz.13563</pub-id>, PMID: <pub-id pub-id-type="pmid">38041861</pub-id>
</mixed-citation>
</ref>
<ref id="B43">
<label>43</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Koob</surname> <given-names>GF</given-names></name>
<name><surname>Volkow</surname> <given-names>ND</given-names></name>
</person-group>. 
<article-title>Neurobiology of addiction: a neurocircuitry analysis</article-title>. <source>Lancet Psychiatry</source>. (<year>2016</year>) <volume>3</volume>:<page-range>760&#x2013;73</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1016/S2215-0366(16)00104-8</pub-id>, PMID: <pub-id pub-id-type="pmid">27475769</pub-id>
</mixed-citation>
</ref>
<ref id="B44">
<label>44</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>L&#xfc;scher</surname> <given-names>C</given-names></name>
<name><surname>Robbins</surname> <given-names>TW</given-names></name>
<name><surname>Everitt</surname> <given-names>BJ</given-names></name>
</person-group>. 
<article-title>The transition to compulsion in addiction</article-title>. <source>Nat Rev Neurosci</source>. (<year>2020</year>) <volume>21</volume>:<page-range>247&#x2013;63</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1038/s41583-020-0289-z</pub-id>, PMID: <pub-id pub-id-type="pmid">32231315</pub-id>
</mixed-citation>
</ref>
<ref id="B45">
<label>45</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Rieck</surname> <given-names>RW</given-names></name>
<name><surname>Ansari</surname> <given-names>MS</given-names></name>
<name><surname>Whetsell</surname> <given-names>WO</given-names></name>
<name><surname>Deutch</surname> <given-names>AY</given-names></name>
<name><surname>Kessler</surname> <given-names>RM</given-names></name>
</person-group>. 
<article-title>Distribution of dopamine D2-like receptors in the human thalamus: autoradiographic and PET studies</article-title>. <source>Neuropsychopharmacol Off Publ Am Coll Neuropsychopharmacol</source>. (<year>2004</year>) <volume>29</volume>:<page-range>362&#x2013;72</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1038/sj.npp.1300336</pub-id>, PMID: <pub-id pub-id-type="pmid">14627996</pub-id>
</mixed-citation>
</ref>
<ref id="B46">
<label>46</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Ullsperger</surname> <given-names>M</given-names></name>
<name><surname>Danielmeier</surname> <given-names>C</given-names></name>
<name><surname>Jocham</surname> <given-names>G</given-names></name>
</person-group>. 
<article-title>Neurophysiology of performance monitoring and adaptive behavior</article-title>. <source>Physiol Rev</source>. (<year>2014</year>) <volume>94</volume>:<page-range>35&#x2013;79</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1152/physrev.00041.2012</pub-id>, PMID: <pub-id pub-id-type="pmid">24382883</pub-id>
</mixed-citation>
</ref>
<ref id="B47">
<label>47</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Perea Bartolom&#xe9;</surname> <given-names>MV</given-names></name>
<name><surname>Ladera Fern&#xe1;ndez</surname> <given-names>V</given-names></name>
</person-group>. 
<article-title>Neurofunctional aspects of the thalamus</article-title>. <source>Rev Neurol</source>. (<year>2004</year>) <volume>38</volume>:<page-range>687&#x2013;93</page-range>. Available online at: <uri xlink:href="https://pubmed.ncbi.nlm.nih.gov/15098193/">https://pubmed.ncbi.nlm.nih.gov/15098193/</uri>, PMID: <pub-id pub-id-type="pmid">15098193</pub-id>
</mixed-citation>
</ref>
<ref id="B48">
<label>48</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Tice</surname> <given-names>DM</given-names></name>
<name><surname>Bratslavsky</surname> <given-names>E</given-names></name>
<name><surname>Baumeister</surname> <given-names>RF</given-names></name>
</person-group>. 
<article-title>Emotional distress regulation takes precedence over impulse control: if you feel bad, do it</article-title>! <source>J Pers Soc Psychol</source>. (<year>2001</year>) <volume>80</volume>:<fpage>53</fpage>&#x2013;<lpage>67</lpage>., PMID: <pub-id pub-id-type="pmid">11195891</pub-id>
</mixed-citation>
</ref>
<ref id="B49">
<label>49</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Williams</surname> <given-names>AD</given-names></name>
<name><surname>Grisham</surname> <given-names>JR</given-names></name>
<name><surname>Erskine</surname> <given-names>A</given-names></name>
<name><surname>Cassedy</surname> <given-names>E</given-names></name>
</person-group>. 
<article-title>Deficits in emotion regulation associated with pathological gambling</article-title>. <source>Br J Clin Psychol</source>. (<year>2012</year>) <volume>51</volume>:<page-range>223&#x2013;38</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1111/j.2044-8260.2011.02022.x</pub-id>, PMID: <pub-id pub-id-type="pmid">22574806</pub-id>
</mixed-citation>
</ref>
<ref id="B50">
<label>50</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Agarwal</surname> <given-names>K</given-names></name>
<name><surname>Joseph</surname> <given-names>PV</given-names></name>
<name><surname>Zhang</surname> <given-names>R</given-names></name>
<name><surname>Schwandt</surname> <given-names>ML</given-names></name>
<name><surname>Ramchandani</surname> <given-names>VA</given-names></name>
<name><surname>Diazgranados</surname> <given-names>N</given-names></name>
<etal/>
</person-group>. 
<article-title>Early life stress and body-mass-index modulate brain connectivity in alcohol use disorder</article-title>. <source>Transl Psychiatry</source>. (<year>2024</year>) <volume>14</volume>:<fpage>43</fpage>. doi:&#xa0;<pub-id pub-id-type="doi">10.1038/s41398-024-02756-8</pub-id>, PMID: <pub-id pub-id-type="pmid">38245501</pub-id>
</mixed-citation>
</ref>
<ref id="B51">
<label>51</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Gondr&#xe9;-Lewis</surname> <given-names>MC</given-names></name>
<name><surname>Warnock</surname> <given-names>KT</given-names></name>
<name><surname>Wang</surname> <given-names>H</given-names></name>
<name><surname>June</surname> <given-names>HL</given-names></name>
<name><surname>Bell</surname> <given-names>KA</given-names></name>
<name><surname>Rabe</surname> <given-names>H</given-names></name>
<etal/>
</person-group>. 
<article-title>Early life stress is a risk factor for excessive alcohol drinking and impulsivity in adults and is mediated via a CRF/GABA A mechanism</article-title>. <source>Stress</source>. (<year>2016</year>) <volume>19</volume>:<page-range>235&#x2013;47</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.3109/10253890.2016.1160280</pub-id>, PMID: <pub-id pub-id-type="pmid">27023221</pub-id>
</mixed-citation>
</ref>
<ref id="B52">
<label>52</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Francoeur</surname> <given-names>MJ</given-names></name>
<name><surname>Wormwood</surname> <given-names>BA</given-names></name>
<name><surname>Gibson</surname> <given-names>BM</given-names></name>
<name><surname>Mair</surname> <given-names>RG</given-names></name>
</person-group>. 
<article-title>Central thalamic inactivation impairs the expression of action- and outcome-related responses of medial prefrontal cortex neurons in the rat</article-title>. <source>Eur J Neurosci</source>. (<year>2019</year>) <volume>50</volume>:<page-range>1779&#x2013;98</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1111/ejn.14350</pub-id>, PMID: <pub-id pub-id-type="pmid">30919548</pub-id>
</mixed-citation>
</ref>
<ref id="B53">
<label>53</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Hare</surname> <given-names>SM</given-names></name>
<name><surname>Adhikari</surname> <given-names>BM</given-names></name>
<name><surname>Du</surname> <given-names>X</given-names></name>
<name><surname>Garcia</surname> <given-names>L</given-names></name>
<name><surname>Bruce</surname> <given-names>H</given-names></name>
<name><surname>Kochunov</surname> <given-names>P</given-names></name>
<etal/>
</person-group>. 
<article-title>Local versus long-range connectivity patterns of auditory disturbance in schizophrenia</article-title>. <source>Schizophr Res</source>. (<year>2021</year>) <volume>228</volume>:<page-range>262&#x2013;70</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1016/j.schres.2020.11.052</pub-id>, PMID: <pub-id pub-id-type="pmid">33493774</pub-id>
</mixed-citation>
</ref>
<ref id="B54">
<label>54</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Denier</surname> <given-names>N</given-names></name>
<name><surname>Schmidt</surname> <given-names>A</given-names></name>
<name><surname>Gerber</surname> <given-names>H</given-names></name>
<name><surname>Vogel</surname> <given-names>M</given-names></name>
<name><surname>Huber</surname> <given-names>CG</given-names></name>
<name><surname>Lang</surname> <given-names>UE</given-names></name>
<etal/>
</person-group>. 
<article-title>Abnormal functional integration of thalamic low frequency oscillation in the BOLD signal after acute heroin treatment</article-title>. <source>Hum Brain Mapp</source>. (<year>2015</year>) <volume>36</volume>:<page-range>5287&#x2013;300</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1002/hbm.23011</pub-id>, PMID: <pub-id pub-id-type="pmid">26441146</pub-id>
</mixed-citation>
</ref>
<ref id="B55">
<label>55</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Chang</surname> <given-names>H</given-names></name>
<name><surname>Li</surname> <given-names>W</given-names></name>
<name><surname>Li</surname> <given-names>Q</given-names></name>
<name><surname>Chen</surname> <given-names>J</given-names></name>
<name><surname>Zhu</surname> <given-names>J</given-names></name>
<name><surname>Ye</surname> <given-names>J</given-names></name>
<etal/>
</person-group>. 
<article-title>Regional homogeneity changes between heroin relapse and non-relapse patients under methadone maintenance treatment: a resting-state fMRI study</article-title>. <source>BMC Neurol</source>. (<year>2016</year>) <volume>16</volume>:<fpage>145</fpage>. doi:&#xa0;<pub-id pub-id-type="doi">10.1186/s12883-016-0659-3</pub-id>, PMID: <pub-id pub-id-type="pmid">27538517</pub-id>
</mixed-citation>
</ref>
<ref id="B56">
<label>56</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Kim</surname> <given-names>H</given-names></name>
<name><surname>Kim</surname> <given-names>YK</given-names></name>
<name><surname>Gwak</surname> <given-names>AR</given-names></name>
<name><surname>Lim</surname> <given-names>JA</given-names></name>
<name><surname>Lee</surname> <given-names>JY</given-names></name>
<name><surname>Jung</surname> <given-names>HY</given-names></name>
<etal/>
</person-group>. 
<article-title>Resting-state regional homogeneity as a biological marker for patients with Internet gaming disorder: A comparison with patients with alcohol use disorder and healthy controls</article-title>. <source>Prog Neuropsychopharmacol Biol Psychiatry</source>. (<year>2015</year>) <volume>60</volume>:<page-range>104&#x2013;11</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1016/j.pnpbp.2015.02.004</pub-id>, PMID: <pub-id pub-id-type="pmid">25689820</pub-id>
</mixed-citation>
</ref>
<ref id="B57">
<label>57</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Zhang</surname> <given-names>M</given-names></name>
<name><surname>Gao</surname> <given-names>X</given-names></name>
<name><surname>Yang</surname> <given-names>Z</given-names></name>
<name><surname>Niu</surname> <given-names>X</given-names></name>
<name><surname>Chen</surname> <given-names>J</given-names></name>
<name><surname>Wei</surname> <given-names>Y</given-names></name>
<etal/>
</person-group>. 
<article-title>Weight status modulated brain regional homogeneity in long-term male smokers</article-title>. <source>Front Psychiatry</source>. (<year>2022</year>) <volume>13</volume>:<elocation-id>857479</elocation-id>. doi:&#xa0;<pub-id pub-id-type="doi">10.3389/fpsyt.2022.857479</pub-id>, PMID: <pub-id pub-id-type="pmid">35733797</pub-id>
</mixed-citation>
</ref>
<ref id="B58">
<label>58</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Batschelet</surname> <given-names>HM</given-names></name>
<name><surname>Tschuemperlin</surname> <given-names>RM</given-names></name>
<name><surname>Moggi</surname> <given-names>F</given-names></name>
<name><surname>Soravia</surname> <given-names>LM</given-names></name>
<name><surname>Koenig</surname> <given-names>T</given-names></name>
<name><surname>Pfeifer</surname> <given-names>P</given-names></name>
<etal/>
</person-group>. 
<article-title>Neurophysiological correlates of alcohol-specific inhibition in alcohol use disorder and its association with craving and relapse</article-title>. <source>Clin Neurophysiol</source>. (<year>2021</year>) <volume>132</volume>:<page-range>1290&#x2013;301</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1016/j.clinph.2021.02.389</pub-id>, PMID: <pub-id pub-id-type="pmid">33867254</pub-id>
</mixed-citation>
</ref>
<ref id="B59">
<label>59</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Hermann</surname> <given-names>D</given-names></name>
<name><surname>Smolka</surname> <given-names>MN</given-names></name>
<name><surname>Klein</surname> <given-names>S</given-names></name>
<name><surname>Heinz</surname> <given-names>A</given-names></name>
<name><surname>Mann</surname> <given-names>K</given-names></name>
<name><surname>Braus</surname> <given-names>DF</given-names></name>
</person-group>. 
<article-title>Reduced fMRI activation of an occipital area in recently detoxified alcohol-dependent patients in a visual and acoustic stimulation paradigm</article-title>. <source>Addict Biol</source>. (<year>2007</year>) <volume>12</volume>:<page-range>117&#x2013;21</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1111/j.1369-1600.2006.00039.x</pub-id>, PMID: <pub-id pub-id-type="pmid">17407505</pub-id>
</mixed-citation>
</ref>
<ref id="B60">
<label>60</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Wang</surname> <given-names>Y</given-names></name>
<name><surname>Qin</surname> <given-names>Y</given-names></name>
<name><surname>Li</surname> <given-names>H</given-names></name>
<name><surname>Yao</surname> <given-names>D</given-names></name>
<name><surname>Sun</surname> <given-names>B</given-names></name>
<name><surname>Li</surname> <given-names>Z</given-names></name>
<etal/>
</person-group>. 
<article-title>Abnormal functional connectivity in cognitive control network, default mode network, and visual attention network in internet addiction: A resting-state fMRI study</article-title>. <source>Front Neurol</source>. (<year>2019</year>) <volume>10</volume>:<elocation-id>1006</elocation-id>. doi:&#xa0;<pub-id pub-id-type="doi">10.3389/fneur.2019.01006</pub-id>, PMID: <pub-id pub-id-type="pmid">31620077</pub-id>
</mixed-citation>
</ref>
<ref id="B61">
<label>61</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Bezdek</surname> <given-names>MA</given-names></name>
<name><surname>Gerrig</surname> <given-names>RJ</given-names></name>
<name><surname>Wenzel</surname> <given-names>WG</given-names></name>
<name><surname>Shin</surname> <given-names>J</given-names></name>
<name><surname>Pirog Revill</surname> <given-names>K</given-names></name>
<name><surname>Schumacher</surname> <given-names>EH</given-names></name>
</person-group>. 
<article-title>Neural evidence that suspense narrows attentional focus</article-title>. <source>Neuroscience</source>. (<year>2015</year>) :<page-range>303:338&#x2013;45</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1016/j.neuroscience.2015.06.055</pub-id>, PMID: <pub-id pub-id-type="pmid">26143014</pub-id>
</mixed-citation>
</ref>
<ref id="B62">
<label>62</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Camchong</surname> <given-names>J</given-names></name>
<name><surname>Stenger</surname> <given-names>A</given-names></name>
<name><surname>Fein</surname> <given-names>G</given-names></name>
</person-group>. 
<article-title>Resting-state synchrony during early alcohol abstinence can predict subsequent relapse</article-title>. <source>Cereb Cortex</source>. (<year>2013</year>) <volume>23</volume>:<page-range>2086&#x2013;99</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1093/cercor/bhs190</pub-id>, PMID: <pub-id pub-id-type="pmid">22819968</pub-id>
</mixed-citation>
</ref>
<ref id="B63">
<label>63</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Buschschulte</surname> <given-names>A</given-names></name>
<name><surname>Boehler</surname> <given-names>CN</given-names></name>
<name><surname>Strumpf</surname> <given-names>H</given-names></name>
<name><surname>Stoppel</surname> <given-names>C</given-names></name>
<name><surname>Heinze</surname> <given-names>HJ</given-names></name>
<name><surname>Schoenfeld</surname> <given-names>MA</given-names></name>
<etal/>
</person-group>. 
<article-title>Reward- and attention-related biasing of sensory selection in visual cortex</article-title>. <source>J Cognit Neurosci</source>. (<year>2014</year>) <volume>26</volume>:<page-range>1049&#x2013;65</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1162/jocn_a_00539</pub-id>, PMID: <pub-id pub-id-type="pmid">24345176</pub-id>
</mixed-citation>
</ref>
<ref id="B64">
<label>64</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Wickelgren</surname> <given-names>I</given-names></name>
</person-group>. 
<article-title>Getting the brain&#x2019;s attention</article-title>. <source>Science</source>. (<year>1997</year>) <volume>278</volume>:<page-range>35&#x2013;7</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1126/science.278.5335.35</pub-id>, PMID: <pub-id pub-id-type="pmid">9340756</pub-id>
</mixed-citation>
</ref>
<ref id="B65">
<label>65</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Vollst&#xe4;dt-Klein</surname> <given-names>S</given-names></name>
<name><surname>Loeber</surname> <given-names>S</given-names></name>
<name><surname>Richter</surname> <given-names>A</given-names></name>
<name><surname>Kirsch</surname> <given-names>M</given-names></name>
<name><surname>Bach</surname> <given-names>P</given-names></name>
<name><surname>von der Goltz</surname> <given-names>C</given-names></name>
<etal/>
</person-group>. 
<article-title>Validating incentive salience with functional magnetic resonance imaging: association between mesolimbic cue reactivity and attentional bias in alcohol-dependent patients</article-title>. <source>Addict Biol</source>. (<year>2012</year>) <volume>17</volume>:<page-range>807&#x2013;16</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1111/j.1369-1600.2011.00352.x</pub-id>, PMID: <pub-id pub-id-type="pmid">21790907</pub-id>
</mixed-citation>
</ref>
<ref id="B66">
<label>66</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Schoenmakers</surname> <given-names>TM</given-names></name>
<name><surname>Wiers</surname> <given-names>RW</given-names></name>
</person-group>. 
<article-title>Craving and attentional bias respond differently to alcohol priming: a field study in the pub</article-title>. <source>Eur Addict Res</source>. (<year>2010</year>) <volume>16</volume>:<fpage>9</fpage>&#x2013;<lpage>16</lpage>. doi:&#xa0;<pub-id pub-id-type="doi">10.1159/000253859</pub-id>, PMID: <pub-id pub-id-type="pmid">19887804</pub-id>
</mixed-citation>
</ref>
<ref id="B67">
<label>67</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Northoff</surname> <given-names>G</given-names></name>
<name><surname>Sandsten</surname> <given-names>KE</given-names></name>
<name><surname>Nordgaard</surname> <given-names>J</given-names></name>
<name><surname>Kjaer</surname> <given-names>TW</given-names></name>
<name><surname>Parnas</surname> <given-names>J</given-names></name>
</person-group>. 
<article-title>The self and its prolonged intrinsic neural timescale in schizophrenia</article-title>. <source>Schizophr Bull</source>. (<year>2021</year>) <volume>47</volume>:<page-range>170&#x2013;9</page-range>. doi:&#xa0;<pub-id pub-id-type="doi">10.1093/schbul/sbaa083</pub-id>, PMID: <pub-id pub-id-type="pmid">32614395</pub-id>
</mixed-citation>
</ref>
<ref id="B68">
<label>68</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Wang</surname> <given-names>K</given-names></name>
<name><surname>Zhang</surname> <given-names>X</given-names></name>
<name><surname>Song</surname> <given-names>C</given-names></name>
<name><surname>Ma</surname> <given-names>K</given-names></name>
<name><surname>Bai</surname> <given-names>M</given-names></name>
<name><surname>Zheng</surname> <given-names>R</given-names></name>
<etal/>
</person-group>. 
<article-title>Decreased intrinsic neural timescales in mesial temporal lobe epilepsy</article-title>. <source>Front Hum Neurosci</source>. (<year>2021</year>) <volume>15</volume>:<elocation-id>772365</elocation-id>. doi:&#xa0;<pub-id pub-id-type="doi">10.3389/fnhum.2021.772365</pub-id>, PMID: <pub-id pub-id-type="pmid">34955790</pub-id>
</mixed-citation>
</ref>
<ref id="B69">
<label>69</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Han</surname> <given-names>S</given-names></name>
<name><surname>Zheng</surname> <given-names>R</given-names></name>
<name><surname>Li</surname> <given-names>S</given-names></name>
<name><surname>Zhou</surname> <given-names>B</given-names></name>
<name><surname>Jiang</surname> <given-names>Y</given-names></name>
<name><surname>Wang</surname> <given-names>C</given-names></name>
<etal/>
</person-group>. 
<article-title>Integrative functional, molecular, and transcriptomic analyses of altered intrinsic timescale gradient in depression</article-title>. <source>Front Neurosci</source>. (<year>2022</year>) <volume>16</volume>:<elocation-id>826609</elocation-id>. doi:&#xa0;<pub-id pub-id-type="doi">10.3389/fnins.2022.826609</pub-id>, PMID: <pub-id pub-id-type="pmid">35250462</pub-id>
</mixed-citation>
</ref>
<ref id="B70">
<label>70</label>
<mixed-citation publication-type="journal">
<person-group person-group-type="author">
<name><surname>Flores-Bonilla</surname> <given-names>A</given-names></name>
<name><surname>Richardson</surname> <given-names>HN</given-names></name>
</person-group>. 
<article-title>Sex differences in the neurobiology of alcohol use disorder</article-title>. <source>Alcohol Res</source>. (<year>2020</year>) <volume>40</volume>:<fpage>04</fpage>. doi:&#xa0;<pub-id pub-id-type="doi">10.35946/arcr.v40.2.04</pub-id>, PMID: <pub-id pub-id-type="pmid">33042719</pub-id>
</mixed-citation>
</ref>
</ref-list>
<fn-group>
<fn id="n1" fn-type="custom" custom-type="edited-by">
<p>Edited by: <ext-link ext-link-type="uri" xlink:href="https://loop.frontiersin.org/people/1894375">Francesco Salis</ext-link>, University of Cagliari, Italy</p></fn>
<fn id="n2" fn-type="custom" custom-type="reviewed-by">
<p>Reviewed by: <ext-link ext-link-type="uri" xlink:href="https://loop.frontiersin.org/people/859279">Sugumar D</ext-link>, Karunya Institute of Technology and Sciences, India</p>
<p><ext-link ext-link-type="uri" xlink:href="https://loop.frontiersin.org/people/3023019">Anamaria Ciubara</ext-link>, Dunarea de Jos University, Romania</p></fn>
</fn-group>
<fn-group>
<fn fn-type="abbr" id="abbrev1">
<label>Abbreviations:</label>
<p>AUD, alcohol use disorder; rs-fMRI, resting-state functional magnetic resonance imaging; INT, intrinsic neural timescale; EEG, electroencephalography; MEG, magnetoencephalography; ERPs, event-related brain potentials; dFNC, dynamic functional network connectivity; BMI, body mass index; ADS, alcohol dependence scale; AUDIT, alcohol use disorder identification test; CAGE, cut down, annoyed, guilty, eye-opener; VAS, visual analogue scale; OCDS, obsessive-compulsive drinking scale; MoCA, Montreal cognitive assessment; EPI, echo planar imaging; ACF, autocorrelation function.</p>
</fn>
</fn-group>
</back>
</article>