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大脑注意力网络中的因果功能贡献与相互作用:一种客观的多扰动分析

Causal functional contributions and interactions in the attention network of the brain: an objective multi-perturbation analysis.

作者信息

Zavaglia Melissa, Hilgetag Claus C

机构信息

Department of Computational Neuroscience, University Medical Center Hamburg-Eppendorf, Hamburg University, Martinistra§e 52, 20246, Hamburg, Germany.

School of Engineering and Science, Jacobs University Bremen, Campus Ring 1, 28759, Bremen, Germany.

出版信息

Brain Struct Funct. 2016 Jun;221(5):2553-68. doi: 10.1007/s00429-015-1058-z. Epub 2015 May 23.

Abstract

Spatial attention is a prime example for the distributed network functions of the brain. Lesion studies in animal models have been used to investigate intact attentional mechanisms as well as perspectives for rehabilitation in the injured brain. Here, we systematically analyzed behavioral data from cooling deactivation and permanent lesion experiments in the cat, where unilateral deactivation of the posterior parietal cortex (in the vicinity of the posterior middle suprasylvian cortex, pMS) or the superior colliculus (SC) cause a severe neglect in the contralateral hemifield. Counterintuitively, additional deactivation of structures in the opposite hemisphere reverses the deficit. Using such lesion data, we employed a game-theoretical approach, multi-perturbation Shapley value analysis (MSA), for inferring functional contributions and network interactions of bilateral pMS and SC from behavioral performance in visual attention studies. The approach provides an objective theoretical strategy for lesion inferences and allows a unique quantitative characterization of regional functional contributions and interactions on the basis of multi-perturbations. The quantitative analysis demonstrated that right posterior parietal cortex and superior colliculus made the strongest positive contributions to left-field orienting, while left brain regions had negative contributions, implying that their perturbation may reverse the effects of contralateral lesions or improve normal function. An analysis of functional modulations and interactions among the regions revealed redundant interactions (implying functional overlap) between regions within each hemisphere, and synergistic interactions between bilateral regions. To assess the reliability of the MSA method in the face of variable and incomplete input data, we performed a sensitivity analysis, investigating how much the contribution values of the four regions depended on the performance of specific configurations and on the prediction of unknown performances. The results suggest that the MSA approach is sensitive to categorical, but insensitive to gradual changes in the input data. Finally, we created a basic network model that was based on the known anatomical interactions among cortical-tectal regions and reproduced the experimentally observed behavior in visual orienting. We discuss the structural organization of the network model relative to the causal modulations identified by MSA, to aid a mechanistic understanding of the attention network of the brain.

摘要

空间注意力是大脑分布式网络功能的一个典型例子。动物模型中的损伤研究已被用于探究完整的注意力机制以及受损大脑的康复前景。在此,我们系统地分析了猫的冷却失活和永久性损伤实验的行为数据,其中单侧失活后顶叶皮质(在中后上薛氏回附近,pMS)或上丘(SC)会导致对侧半视野的严重忽视。与直觉相反的是,对侧半球结构的额外失活会逆转这种缺陷。利用这些损伤数据,我们采用了一种博弈论方法,即多扰动夏普利值分析(MSA),从视觉注意力研究中的行为表现推断双侧pMS和SC的功能贡献及网络相互作用。该方法为损伤推断提供了一种客观的理论策略,并允许基于多扰动对区域功能贡献和相互作用进行独特的定量表征。定量分析表明,右侧后顶叶皮质和上丘对左视野定向的正向贡献最强,而左侧脑区则有负向贡献,这意味着对它们的扰动可能会逆转对侧损伤的影响或改善正常功能。对各区域间功能调制和相互作用的分析揭示了每个半球内区域之间的冗余相互作用(意味着功能重叠)以及双侧区域之间的协同相互作用。为了评估MSA方法在面对可变和不完整输入数据时的可靠性,我们进行了敏感性分析,研究四个区域的贡献值在多大程度上依赖于特定配置的表现以及对未知表现的预测。结果表明,MSA方法对分类变化敏感,但对输入数据的渐进变化不敏感。最后,我们创建了一个基于皮质 - 顶盖区域之间已知解剖学相互作用的基本网络模型,并重现了视觉定向实验中观察到的行为。我们讨论了网络模型的结构组织与MSA识别的因果调制之间的关系,以帮助从机制上理解大脑的注意力网络。

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