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内侧后顶叶区域V6A中到达空间的多重表征

Multiple representation of reaching space in the medial posterior parietal area V6A.

作者信息

Bosco A, Breveglieri R, Reser D, Galletti C, Fattori P

机构信息

Department of Pharmacy and Biotechnology, University of Bologna, 40126 Bologna, Italy.

Department of Physiology, Faculty of Medicine, Nursing and Health Sciences, Monash University, Melbourne, Australia.

出版信息

Cereb Cortex. 2015 Jun;25(6):1654-67. doi: 10.1093/cercor/bht420. Epub 2014 Jan 12.

Abstract

During foveal reaching, the activity of neurons in the macaque medial posterior parietal area V6A is modulated by both gaze and arm direction. In the present work, we dissociated the position of gaze and reaching targets, and studied the neural activity of single V6A cells while the eyes and reaching targets were arranged in different spatial configurations (peripheral and foveal combinations). Target position influenced neural activity in all stages of the task, from visual presentation of target and movement planning, through reach execution and holding time. The majority of neurons preferred reaches directed toward peripheral targets, rather than foveal. Most neurons discharged in both premovement and action epochs. In most cases, reaching activity was tuned coherently across action planning and execution. When reaches were planned and executed in different eye/target configurations, multiple analyses revealed that few neurons coded reaching actions according to the absolute position of target, or to the position of target relative to the eye. The majority of cells responded to a combination of both these factors. These data suggest that V6A contains multiple representations of spatial information for reaching, consistent with a role of this area in forming cross-reference frame representations to be used by premotor cortex.

摘要

在中央凹够物过程中,猕猴内侧顶叶后区V6A神经元的活动受注视和手臂方向的双重调节。在本研究中,我们分离了注视和够物目标的位置,并在眼睛和够物目标处于不同空间配置(外周和中央凹组合)时,研究了单个V6A细胞的神经活动。目标位置在任务的所有阶段都会影响神经活动,从目标的视觉呈现和运动规划,到够物执行和保持时间。大多数神经元更倾向于朝向外周目标而非中央凹目标的够物动作。大多数神经元在运动前和动作阶段都会放电。在大多数情况下,够物活动在动作规划和执行过程中是协同调整的。当在不同的眼睛/目标配置下进行够物动作的规划和执行时,多项分析表明,很少有神经元根据目标的绝对位置或目标相对于眼睛的位置来编码够物动作。大多数细胞对这两个因素的组合做出反应。这些数据表明,V6A包含用于够物的多种空间信息表征,这与该区域在形成供运动前皮层使用的交叉参照框架表征中所起的作用相一致。

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