大脑功能网络拓扑特征与亚临床冲动:对年轻人和老年人的调查。

IF 2.7 3区 医学 Q1 ANATOMY & MORPHOLOGY Brain Structure & Function Pub Date : 2024-05-01 Epub Date: 2024-03-06 DOI:10.1007/s00429-023-02745-5
Silvia Fornaro, Arianna Menardi, Antonino Vallesi
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引用次数: 0

摘要

在健康人群中经常会发现冲动特质(即不顾负面结果,不经深思熟虑就采取行动的倾向)。一旦受到危险因素的影响,个体就可能患上以行为和认知缺陷为特征的冲动控制障碍(成瘾、药物滥用、赌博),最终导致巨大的社会经济损失。为了预防冲动障碍的发生,研究亚临床人群中与冲动相关的大脑功能网络拓扑组织具有深远的意义。利用开源的 LEMON 数据集,我们采用图论方法研究了年轻(n = 146,年龄:20-35)和年长(n = 61,年龄:59-77)个体与冲动相关的静息态大脑功能网络的拓扑特征。具体来说,我们计算了已知与冲动有关的特定回路和节点(额叶、边缘和纹状体网络)的分离和整合指数。结果显示,在所有分析层次和所有选定网络中,年轻个体的冲动性与更广泛、更少集群和更低效率的功能组织有关。相反,老年人的冲动与纹状体区域的整合减少和分离增加有关。可以推测,这种大脑功能网络的改变可能是与冲动有关的行为和认知异常的基础,这一工作假设值得在未来的研究中加以验证。最后,年轻个体和老年个体之间的差异可能反映了特定年龄适应策略的实施,这可能是观察到的行为表现差异的原因。本文讨论了潜在的解释、局限性和影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Topological features of functional brain networks and subclinical impulsivity: an investigation in younger and older adults.

Impulsive traits (i.e., the tendency to act without forethought regardless of negative outcomes) are frequently found in healthy populations. When exposed to risk factors, individuals may develop debilitating disorders of impulse control (addiction, substance abuse, gambling) characterized by behavioral and cognitive deficits, eventually leading to huge socioeconomic costs. With the far-reaching aim of preventing the onset of impulsive disorders, it is relevant to investigate the topological organization of functional brain networks associated with impulsivity in sub-clinical populations. Taking advantage of the open-source LEMON dataset, we investigated the topological features of resting-state functional brain networks associated with impulsivity in younger (n = 146, age: 20-35) and older (n = 61, age: 59-77) individuals, using a graph-theoretical approach. Specifically, we computed indices of segregation and integration at the level of specific circuits and nodes known to be involved in impulsivity (frontal, limbic, and striatal networks). In younger individuals, results revealed that impulsivity was associated with a more widespread, less clustered and less efficient functional organization, at all levels of analyses and in all selected networks. Conversely, impulsivity in older individuals was associated with reduced integration and increased segregation of striatal regions. Speculatively, such alterations of functional brain networks might underlie behavioral and cognitive abnormalities associated with impulsivity, a working hypothesis worth being tested in future research. Lastly, differences between younger and older individuals might reflect the implementation of age-specific adaptive strategies, possibly accounting for observed differences in behavioral manifestations. Potential interpretations, limitations and implications are discussed.

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来源期刊
Brain Structure & Function
Brain Structure & Function 医学-解剖学与形态学
CiteScore
6.00
自引率
6.50%
发文量
168
审稿时长
8 months
期刊介绍: Brain Structure & Function publishes research that provides insight into brain structure−function relationships. Studies published here integrate data spanning from molecular, cellular, developmental, and systems architecture to the neuroanatomy of behavior and cognitive functions. Manuscripts with focus on the spinal cord or the peripheral nervous system are not accepted for publication. Manuscripts with focus on diseases, animal models of diseases, or disease-related mechanisms are only considered for publication, if the findings provide novel insight into the organization and mechanisms of normal brain structure and function.
期刊最新文献
A Comparison of two Maps of the Human Neocortex: the multimodal MRI-based parcellation of Glasser et al. (2016a), and the myeloarchitectonic parcellation of Nieuwenhuys and Broere (2023), as a first step toward a unified, canonical map. Redefining language networks: connectivity beyond localised regions. Retraction Note: Developmental changes in Notch1 and NLE1 expression in a genetic model of absence epilepsy. Correction: Histamine induces the production of matrix metalloproteinase-9 in human astrocytic cultures via H1-receptor subtype. Towards multi-modal, multi-species brain atlases: part two.
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