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男性默认模式网络子系统的有效连接性与自动吸烟行为

Effective connectivity of default mode network subsystems and automatic smoking behaviour among males.

作者信息

Zhang Mengzhe, Dang Jinghan, Sun Jieping, Tao Qiuying, Niu Xiaoyu, Wang Weijian, Han Shaoqiang, Cheng Jingliang, Zhang Yong

机构信息

From the Department of Magnetic Resonance Imaging, the First Affiliated Hospital of Zhengzhou University, Zhengzhou, China.

From the Department of Magnetic Resonance Imaging, the First Affiliated Hospital of Zhengzhou University, Zhengzhou, China

出版信息

J Psychiatry Neurosci. 2024 Dec 17;49(6):E429-E439. doi: 10.1503/jpn.240058. Print 2024 Nov-Dec.

Abstract

BACKGROUND

The default mode network (DMN) is not a single system, but rather is composed of smaller and distinct functional subsystems that interact with each other. The functional relevance of these subsystems in tobacco use disorder (TUD) and the neurobiological features associated with smoking motivation are still unclear; thus, we sought to assess causal or direct connectivity alterations within 3 subsystems of the DMN among people with TUD.

METHODS

We recruited male smokers and nonsmokers. We conducted resting-state functional magnetic resonance imaging (rs-fMRI) and collected ratings on smoking-related clinical scales. We applied dynamic causal modelling (DCM) to rs-fMRI to characterize changes of effective connectivity in TUD from 3 DMN subsystems, including the midline core network (i.e., the posterior cingulate cortex and the anterior medial prefrontal cortex [PCC-aMPFC] core DMN), the medial temporal subsystem (MTL-DMN), and the dorsal medial prefrontal cortex subsystem (dMPFC-DMN). We used leave-one-out cross-validation to investigate whether the neural response could predict smoking reasons, evaluated using the Russell Reason for Smoking Questionnaire).

RESULTS

We recruited 88 smokers and 54 nonsmokers. Among people with TUD, the parahippocampal cortex (PHC) region showed enhanced self-connection, which was associated with the severity of TUD after nighttime withdrawal. Compared with nonsmokers, people with TUD displayed significant increased effective connectivity within the dMPFC-DMN, and decreased effective connectivity from the dMPFC-DMN to the PCC-aMPFC core DMN. Moreover, decreased effective connectivity from the lateral temporal cortex to the dMPFC could predict the smoking reason related to automatic behaviour.

LIMITATIONS

Although we found aberrance in causal connections in DMN subsystems among people with TUD, our cross-sectional study could not be used to investigate changes in effective connectivity over time and their relationship with clinical features.

CONCLUSION

This study emphasized the aberrant causal connections of different functional subsystems of the DMN in TUD and revealed the neural correlates of automatic smoking behaviours. These findings suggested DMN subsystem-derived indicators could be a potential biomarker for TUD and could be used to identify the heterogeneity in motivation for smoking behaviour.

摘要

背景

默认模式网络(DMN)并非单一系统,而是由相互作用的较小且不同的功能子系统组成。这些子系统在烟草使用障碍(TUD)中的功能相关性以及与吸烟动机相关的神经生物学特征仍不明确;因此,我们试图评估TUD患者中DMN的3个子系统内的因果或直接连接改变。

方法

我们招募了男性吸烟者和非吸烟者。我们进行了静息态功能磁共振成像(rs-fMRI),并收集了吸烟相关临床量表的评分。我们将动态因果模型(DCM)应用于rs-fMRI,以表征TUD中来自3个DMN子系统的有效连接变化,包括中线核心网络(即后扣带回皮质和前内侧前额叶皮质[PCC-aMPFC]核心DMN)、内侧颞叶子系统(MTL-DMN)和背内侧前额叶皮质子系统(dMPFC-DMN)。我们使用留一法交叉验证来研究神经反应是否能够预测吸烟原因(使用罗素吸烟原因问卷进行评估)。

结果

我们招募了88名吸烟者和54名非吸烟者。在TUD患者中,海马旁回皮质(PHC)区域显示出自连接增强,这与夜间戒断后TUD的严重程度相关。与非吸烟者相比,TUD患者在dMPFC-DMN内的有效连接显著增加,而从dMPFC-DMN到PCC-aMPFC核心DMN的有效连接减少。此外,从外侧颞叶皮质到dMPFC的有效连接减少可预测与自动行为相关的吸烟原因。

局限性

尽管我们发现TUD患者中DMN子系统的因果连接存在异常,但我们的横断面研究无法用于调查有效连接随时间的变化及其与临床特征的关系。

结论

本研究强调了TUD中DMN不同功能子系统的异常因果连接,并揭示了自动吸烟行为的神经关联。这些发现表明,源自DMN子系统的指标可能是TUD的潜在生物标志物,可用于识别吸烟行为动机的异质性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e62/11665814/17ea8ca7e979/49-6-e429f1.jpg

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