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后顶叶皮层中肢体末端位置的多模态表示。

Multimodal representation of limb endpoint position in the posterior parietal cortex.

机构信息

School of Biological and Health Systems Engineering, Arizona State University, Tempe, Arizona 85287-9709, USA.

出版信息

J Neurophysiol. 2013 Apr;109(8):2097-107. doi: 10.1152/jn.00223.2012. Epub 2013 Jan 23.

Abstract

Understanding the neural representation of limb position is important for comprehending the control of limb movements and the maintenance of body schema, as well as for the development of neuroprosthetic systems designed to replace lost limb function. Multiple subcortical and cortical areas contribute to this representation, but its multimodal basis has largely been ignored. Regarding the parietal cortex, previous results suggest that visual information about arm position is not strongly represented in area 5, although these results were obtained under conditions in which animals were not using their arms to interact with objects in their environment, which could have affected the relative weighting of relevant sensory signals. Here we examined the multimodal basis of limb position in the superior parietal lobule (SPL) as monkeys reached to and actively maintained their arm position at multiple locations in a frontal plane. On half of the trials both visual and nonvisual feedback of the endpoint of the arm were available, while on the other trials visual feedback was withheld. Many neurons were tuned to arm position, while a smaller number were modulated by the presence/absence of visual feedback. Visual modulation generally took the form of a decrease in both firing rate and variability with limb vision and was associated with more accurate decoding of position at the population level under these conditions. These findings support a multimodal representation of limb endpoint position in the SPL but suggest that visual signals are relatively weakly represented in this area, and only at the population level.

摘要

理解肢体位置的神经表示对于理解肢体运动的控制和身体图式的维持,以及为替代失去的肢体功能而设计的神经假体系统的发展都很重要。多个皮质下和皮质区域有助于这种表示,但它的多模态基础在很大程度上被忽视了。关于顶叶皮层,先前的结果表明,手臂位置的视觉信息在区域 5 中并没有得到强烈的表示,尽管这些结果是在动物没有用手臂与环境中的物体交互的条件下获得的,这可能会影响相关感觉信号的相对权重。在这里,当猴子在一个前平面上到达并主动保持手臂的多个位置时,我们检查了顶叶上区 (SPL) 中肢体位置的多模态基础。在一半的试验中,手臂末端的视觉和非视觉反馈都可用,而在另一半试验中则没有视觉反馈。许多神经元对手臂位置进行调谐,而较少的神经元则受视觉反馈的存在/不存在调制。视觉调制通常表现为手臂视觉时的放电率和变异性降低,并且在这些条件下与位置的更准确群体水平解码相关。这些发现支持 SPL 中肢体端点位置的多模态表示,但表明视觉信号在该区域的表示相对较弱,并且仅在群体水平上。

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