结构小脑和外侧额顶叶网络改变在CUD:一个SBM分析

IF 3.1 3区 医学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Elena Lacomba-Arnau, Agustín Martínez-Molina, Alfonso Barrós-Loscertales
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引用次数: 0

摘要

反复使用药物会导致大脑结构和功能的持久变化。成瘾研究一直表明,与奖励、习惯、突出性、执行功能、记忆和自我调节有关的关键大脑网络发生了重大变化。像基于体素的形态测量学这样的技术强调了不同群体灰质的大规模结构差异。基于源的形态测定法(SBM)更进一步,结合独立成分分析来检测灰质变化的共享模式,所有这些都不需要事先选择感兴趣的区域。然而,SBM尚未用于研究与可卡因成瘾有关的结构改变模式。因此,我们进行了这项分析,以探索可卡因成瘾特异性结构协方差的变化。我们的研究涉及40名被诊断为可卡因使用障碍(CUD)的个体和40名匹配的健康对照。CUD患者完成临床问卷,评估他们的依赖程度和其他相关的临床变量。在调整了年龄相关的影响后,我们观察到两种结构独立的成分在组间存在显著差异,我们确定了结构小脑网络和结构外侧额顶叶网络,它们呈现相反的趋势。具体来说,与健康对照组相比,患有CUD的个体对小脑网络的贡献增加,但同时对外侧额顶叶网络的贡献减少。这些发现揭示了与可卡因成瘾相关的神经调节的独特协方差模式,这表明受影响的侧额顶叶网络的典型结构发育中断,同时表明CUD患者的小脑网络内的神经调节模式扩展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Structural Cerebellar and Lateral Frontoparietal Networks are altered in CUD: An SBM Analysis

Structural Cerebellar and Lateral Frontoparietal Networks are altered in CUD: An SBM Analysis

Repetitive drug use results in enduring structural and functional changes in the brain. Addiction research has consistently revealed significant modifications in key brain networks related to reward, habit, salience, executive function, memory and self-regulation. Techniques like Voxel-based Morphometry have highlighted large-scale structural differences in grey matter across distinct groups. Source-based Morphometry (SBM) takes this a step further by incorporating the Independent Component Analysis to detect shared patterns of grey matter variation, all without requiring prior selection of regions of interest. However, SBM has yet to be employed in the study of structural alteration patterns related to cocaine addiction. Therefore, we performed this analysis to explore alterations in structural covariance specific to cocaine addiction. Our study involved 40 individuals diagnosed with Cocaine Use Disorder (CUD) and 40 matched healthy controls. Participants with CUD completed clinical questionnaires assessing the severity of their dependence and other relevant clinical variables. Following the adjustment for age-related effects, we observed notable disparities between groups in two structural independent components, which we identified as the structural cerebellar network and the structural lateral frontoparietal network, which display opposing trends. Specifically, the individuals with CUD exhibited a heightened contribution to the cerebellar network but simultaneously demonstrated a reduced contribution to the lateral frontoparietal network compared to the healthy controls. These findings unveil distinctive covariance patterns of neuroregulation linked with cocaine addiction, which indicates an interruption in the typical structural development in an affected lateral frontoparietal network, while suggesting an extended pattern of neuroregulation within the cerebellar network in individuals with CUD.

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来源期刊
Addiction Biology
Addiction Biology 生物-生化与分子生物学
CiteScore
8.10
自引率
2.90%
发文量
118
审稿时长
6-12 weeks
期刊介绍: Addiction Biology is focused on neuroscience contributions and it aims to advance our understanding of the action of drugs of abuse and addictive processes. Papers are accepted in both animal experimentation or clinical research. The content is geared towards behavioral, molecular, genetic, biochemical, neuro-biological and pharmacology aspects of these fields. Addiction Biology includes peer-reviewed original research reports and reviews. Addiction Biology is published on behalf of the Society for the Study of Addiction to Alcohol and other Drugs (SSA). Members of the Society for the Study of Addiction receive the Journal as part of their annual membership subscription.
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