Collantoni Enrico, Alberti Francesco, Meregalli Valentina, Meneguzzo Paolo, Tenconi Elena, Favaro Angela
Department of Neurosciences, University of Padua, Via Giustiniani, 2, 35128, Padua, Italy.
Padua Neuroscience Center, University of Padua, Padua, Italy.
Eat Weight Disord. 2022 Feb;27(1):69-83. doi: 10.1007/s40519-021-01172-x. Epub 2021 Mar 23.
Recent evidence from neuroimaging research has shown that eating disorders (EDs) are characterized by alterations in interconnected neural systems, whose characteristics can be usefully described by connectomics tools. The present paper aimed to review the neuroimaging literature in EDs employing connectomic tools, and, specifically, graph theory analysis.
A systematic review of the literature was conducted to identify studies employing graph theory analysis on patients with eating disorders published before the 22nd of June 2020.
Twelve studies were included in the systematic review. Ten of them address anorexia nervosa (AN) (AN = 199; acute AN = 85, weight recovered AN with acute diagnosis = 24; fully recovered AN = 90). The remaining two articles address patients with bulimia nervosa (BN) (BN = 48). Global and regional unbalance in segregation and integration properties were described in both disorders.
The literature concerning the use of connectomics tools in EDs evidenced the presence of alterations in the topological characteristics of brain networks at a global and at a regional level. Changes in local characteristics involve areas that have been demonstrated to be crucial in the neurobiology and pathophysiology of EDs. Regional imbalances in network properties seem to reflect on global patterns.
Level I, systematic review.
神经影像学研究的最新证据表明,饮食失调(EDs)的特征是相互连接的神经系统发生改变,其特征可用连接组学工具进行有效描述。本文旨在综述运用连接组学工具,特别是图论分析的饮食失调神经影像学文献。
对文献进行系统综述,以确定在2020年6月22日前发表的对饮食失调患者运用图论分析的研究。
系统综述纳入了12项研究。其中10项研究针对神经性厌食症(AN)(AN = 199例;急性AN = 85例,急性诊断后体重恢复的AN = 24例;完全康复的AN = 90例)。其余两篇文章针对神经性贪食症(BN)患者(BN = 48例)。两种疾病均描述了在分离和整合特性方面的全局和区域失衡。
关于在饮食失调中使用连接组学工具的文献证明,在全局和区域水平上脑网络拓扑特征存在改变。局部特征的变化涉及已被证明在饮食失调神经生物学和病理生理学中至关重要的区域。网络特性的区域失衡似乎反映在全局模式上。
I级,系统综述。