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基于模拟机器人手臂对接任务的抑郁情绪干扰空间认知的脑电图网络分析

EEG Network Analysis of Depressive Emotion Interference Spatial Cognition Based on a Simulated Robotic Arm Docking Task.

作者信息

Yang Kai, Hu Yidong, Zeng Ying, Tong Li, Gao Yuanlong, Pei Changfu, Li Zhongrui, Yan Bin

机构信息

Henan Province Key Laboratory of Imaging and Intelligent Processing, PLA Strategy Support Force Information Engineering University, Zhengzhou 450001, China.

Key Laboratory for Neuroinformation of Ministry of Education, University of Electronic Science and Technology of China, Chengdu 611730, China.

出版信息

Brain Sci. 2023 Dec 31;14(1):44. doi: 10.3390/brainsci14010044.

Abstract

Depressive emotion (DE) refers to clinically relevant depressive symptoms without meeting the diagnostic criteria for depression. Studies have demonstrated that DE can cause spatial cognition impairment. However, the brain network mechanisms underlying DE interference spatial cognition remain unclear. This study aimed to reveal the differences in brain network connections between DE and healthy control (HC) groups during resting state and a spatial cognition task. The longer operation time of the DE group during spatial cognition task indicated DE interference spatial cognition. In the resting state stage, the DE group had weaker network connections in theta and alpha bands than the HC group had. Specifically, the electrodes in parietal regions were hubs of the differential networks, which are related to spatial attention. Moreover, in docking task stages, the left frontoparietal network connections in delta, beta, and gamma bands were stronger in the DE group than those of the HC group. The enhanced left frontoparietal connections in the DE group may be related to brain resource reorganization to compensate for spatial cognition decline and ensure the completion of spatial cognition tasks. Thus, these findings might provide new insights into the neural mechanisms of depressive emotion interference spatial cognition.

摘要

抑郁情绪(DE)是指临床上具有相关抑郁症状但未达到抑郁症诊断标准的情况。研究表明,抑郁情绪会导致空间认知障碍。然而,抑郁情绪干扰空间认知背后的脑网络机制仍不清楚。本研究旨在揭示抑郁情绪组和健康对照组(HC)在静息状态和空间认知任务期间脑网络连接的差异。抑郁情绪组在空间认知任务期间的操作时间更长,表明抑郁情绪干扰了空间认知。在静息状态阶段,抑郁情绪组在θ波和α波段的网络连接比健康对照组更弱。具体而言,顶叶区域的电极是差异网络的枢纽,这与空间注意力有关。此外,在对接任务阶段,抑郁情绪组在δ波、β波和γ波段的左额顶网络连接比健康对照组更强。抑郁情绪组左额顶连接增强可能与大脑资源重组有关,以补偿空间认知下降并确保空间认知任务的完成。因此,这些发现可能为抑郁情绪干扰空间认知的神经机制提供新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7dea/10813131/b172e6a76e02/brainsci-14-00044-g001.jpg

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