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Reaching activity in parietal area V6A of macaque: eye influence on arm activity or retinocentric coding of reaching movements?

机译:猕猴顶叶区V6A的活动:眼睛对手臂活动或达到活动的视网膜中心编码有影响吗?

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摘要

Parietal area V6A contains neurons modulated by the direction of gaze as well as neurons able to code the direction of arm movement. The present study was aimed to disentangle the gaze effect from the effect of reaching activity upon single V6A neurons. To this purpose, we used a visuomotor task in which the direction of arm movement remained constant while the animal changed the direction of gaze. Gaze direction modulated reach-related activity in about two-thirds of tested neurons. In several cases, modulations were not due to the eye-position signal per se, the apparent eye-position modulation being just an epiphenomenon. The real modulating factor was the location of reaching target with respect to the point gazed by the animal, that is, the retinotopic coordinates towards which the action of reaching occurred. Comparison of neural discharge of the same cell during execution of foveated and non-foveated reaching movements, performed towards the same or different spatial locations, confirmed that in a part of V6A neurons reaching activity is coded retinocentrically. In other neurons, reaching activity is coded spatially, depending on the direction of reaching movement regardless of where the animal was looking at. The majority of V6A reaching neurons use a system that encompasses both of these reference frames. These results are in line with the view of a progressive visuomotor transformation in the dorsal visual stream, that changes the frame of reference from the retinocentric one, typically used by the visual system, to the arm-centred one, typically used by the motor system.
机译:顶区V6A包含受注视方向调制的神经元以及能够编码手臂运动方向的神经元。本研究旨在将凝视效果与对单个V6A神经元的达到活性的效果区分开。为此,我们使用了视觉运动任务,其中手臂运动的方向保持不变,而动物改变了凝视的方向。注视方向在大约三分之二的受测神经元中调节了到达范围相关的活动。在某些情况下,调制不是由于眼位信号本身引起的,表观眼位调制只是一种现象。真正的调节因素是到达目标相对于动物凝视点的位置,即到达作用发生的视网膜原位坐标。朝着相同或不同空间位置进行的先行和未先行到达运动期间相同细胞神经放电的比较,证实在V6A的一部分神经元中,达到活动的神经是视网膜中心编码的。在其他神经元中,取决于到达运动的方向,无论动物在哪里看着,到达活动都在空间上编码。到达V6A的大多数神经元都使用包含这两个参考框架的系统。这些结果与背面视觉流中渐进性视觉运动转换的观点一致,该转换将参考系从通常由视觉系统使用的视网膜中心坐标系更改为通常由运动系统使用的以手臂为中心坐标系。

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