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顶叶皮层 5d 区参考系在规划伸展过程中的时间分析。

Temporal analysis of reference frames in parietal cortex area 5d during reach planning.

机构信息

Division of Biology, California Institute of Technology, Pasadena, California 91125.

出版信息

J Neurosci. 2014 Apr 9;34(15):5273-84. doi: 10.1523/JNEUROSCI.2068-13.2014.

Abstract

The neural encoding of spatial and postural reference frames in posterior parietal cortex has traditionally been studied during fixed epochs, but the temporal evolution of these representations (or lack thereof) can provide insight into the underlying computations and functions of this region. Here we present single-unit data recorded from two rhesus macaques during a reach planning task. We found that area 5d coded the position of the hand relative to gaze before presentation of the reach target, but switched to coding the target location relative to hand position soon after target presentation. In the pretarget period the most relevant information for success in the task is the position of the hand relative to gaze; however, after target onset, the most task-relevant spatial relationship is the location of the target relative to the hand. The switch in coding suggests that population activity in area 5d may represent postural and spatial information in the reference frame that is most pertinent at each stage of the task. Moreover, although target-hand coding was dominant from soon after the reach target onset, this representation was not static but built in strength as movement onset approached, which we speculate could reflect a role for this region in building an accurate state estimate for the limb. We conclude that representations in area 5d are more flexible and dynamic than previously reported.

摘要

在传统的研究中,后顶叶皮层中空间和姿势参考系的神经编码是在固定的时间窗内进行研究的,但这些表示形式的时间演变(或缺乏)可以深入了解该区域的基本计算和功能。在这里,我们呈现了两只恒河猴在进行伸手规划任务时记录的单个神经元数据。我们发现,5d 区在目标呈现之前编码手相对于注视的位置,但在目标呈现后不久,就切换到了对手相对于手的位置进行编码。在目标呈现之前,对手的位置与手相对于注视的位置之间的关系最为密切;然而,在目标呈现后,最相关的空间关系是目标相对于手的位置。这种编码的转换表明,5d 区的群体活动可能代表了在任务的每个阶段最相关的参考系中的姿势和空间信息。此外,尽管从目标呈现后不久开始,目标-手的编码就占据主导地位,但这种表示形式并不是静态的,而是随着运动开始而逐渐增强,我们推测这反映了该区域在构建肢体的精确状态估计方面的作用。我们的结论是,5d 区的表示形式比以前报道的更加灵活和动态。

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