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通过代谢网络拓扑分析揭示 ADHD SHR 模型中脑连接的成熟延迟和非对称信息流。

Maturational delay and asymmetric information flow of brain connectivity in SHR model of ADHD revealed by topological analysis of metabolic networks.

机构信息

Department of Nuclear Medicine, Seoul National University College of Medicine, Seoul, Republic of Korea.

Division of Nuclear Medicine, Department of Radiology, Seoul St. Mary's Hospital, College of Medicine, The Catholic University of Korea, Seoul, Republic of Korea.

出版信息

Sci Rep. 2020 Feb 21;10(1):3197. doi: 10.1038/s41598-020-59921-4.

Abstract

Attention-deficit hyperactivity disorder (ADHD) is a complex brain development disorder characterized by hyperactivity/impulsivity and inattention. A major hypothesis of ADHD is a lag of maturation, which is supported mainly by anatomical studies evaluating cortical thickness. Here, we analyzed changes of topological characteristics of whole-brain metabolic connectivity in twelve SHR rats selected as ADHD-model rats by confirming behavior abnormalities using the marble burying test, open field test, and delay discounting task and 12 Wistar Kyoto rats as the control group, across development from 4 weeks old (childhood) and 6 weeks old (entry of puberty). A topological approach based on graph filtrations revealed a lag in the strengthening of limbic-cortical/subcortical connections in ADHD-model rats. This in turn related to impaired modularization of memory and reward-motivation associated regions. Using mathematical network analysis techniques such as single linkage hierarchical clustering and volume entropy, we observed left-lateralized connectivity in the ADHD-model rats at 6 weeks old. Our findings supported the maturational delay of metabolic connectivity in the SHR model of ADHD, and also suggested the possibility of impaired and compensative reconfiguration of information flow over the brain network.

摘要

注意缺陷多动障碍(ADHD)是一种复杂的大脑发育障碍,其特征是多动/冲动和注意力不集中。ADHD 的一个主要假设是成熟滞后,这主要得到了评估皮质厚度的解剖学研究的支持。在这里,我们通过使用大理石埋藏测试、旷场测试和延迟折扣任务来确认行为异常,选择了 12 只 SHR 大鼠作为 ADHD 模型大鼠,并分析了从 4 周龄(儿童期)到 6 周龄(青春期开始)的整个发育过程中,12 只 Wistar Kyoto 大鼠作为对照组,全脑代谢连接的拓扑特征变化。基于图过滤的拓扑方法揭示了 ADHD 模型大鼠边缘皮质/皮质下连接的强化滞后。这反过来又与与记忆和奖励动机相关的区域的模块化受损有关。使用数学网络分析技术,如单链接层次聚类和体积熵,我们在 6 周龄时观察到 ADHD 模型大鼠的左侧连接。我们的研究结果支持 ADHD 的 SHR 模型中代谢连接的成熟滞后,并且还表明信息流在大脑网络上的受损和补偿性重新配置的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/372d/7035354/2d1ecb51b18e/41598_2020_59921_Fig1_HTML.jpg

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