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顶叶皮质在半侧空间忽视猴子模型中的运动作用。

Motor role of parietal cortex in a monkey model of hemispatial neglect.

作者信息

Kubanek Jan, Li Jingfeng M, Snyder Lawrence H

机构信息

Department of Anatomy and Neurobiology, Washington University School of Medicine, St. Louis, MO 63110; and Department of Biomedical Engineering, Washington University in St. Louis, St. Louis, MO 63130

Department of Anatomy and Neurobiology, Washington University School of Medicine, St. Louis, MO 63110; and.

出版信息

Proc Natl Acad Sci U S A. 2015 Apr 21;112(16):E2067-72. doi: 10.1073/pnas.1418324112. Epub 2015 Mar 10.

Abstract

Parietal cortex is central to spatial cognition. Lesions of parietal cortex often lead to hemispatial neglect, an impairment of choices of targets in space. It has been unclear whether parietal cortex implements target choice at the general cognitive level, or whether parietal cortex subserves the choice of targets of particular actions. To address this question, monkeys engaged in choice tasks in two distinct action contexts--eye movements and arm movements. We placed focused reversible lesions into specific parietal circuits using the GABAA receptor agonist muscimol and validated the lesion placement using MRI. We found that lesions on the lateral bank of the intraparietal sulcus [lateral intraparietal area (LIP)] specifically biased choices made using eye movements, whereas lesions on the medial bank of the intraparietal sulcus [parietal reach region (PRR)] specifically biased choices made using arm movements. This double dissociation suggests that target choice is implemented in dedicated parietal circuits in the context of specific actions. This finding emphasizes a motor role of parietal cortex in spatial choice making and contributes to our understanding of hemispatial neglect.

摘要

顶叶皮质对于空间认知至关重要。顶叶皮质损伤常常导致半侧空间忽视,即空间中目标选择的障碍。目前尚不清楚顶叶皮质是在一般认知水平上执行目标选择,还是顶叶皮质为特定动作的目标选择提供支持。为了解决这个问题,让猴子在两种不同的动作情境——眼球运动和手臂运动——中进行选择任务。我们使用GABAA受体激动剂蝇蕈醇在特定的顶叶回路中进行聚焦可逆性损伤,并通过MRI验证损伤位置。我们发现,顶内沟外侧壁[外侧顶内区(LIP)]的损伤特别偏向于使用眼球运动做出的选择,而顶内沟内侧壁[顶叶够物区(PRR)]的损伤特别偏向于使用手臂运动做出的选择。这种双重分离表明,目标选择是在特定动作的背景下在专门的顶叶回路中执行的。这一发现强调了顶叶皮质在空间决策中的运动作用,并有助于我们对半侧空间忽视的理解。

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