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Gaze and smooth pursuit signals interact in parietal area 7m of the behaving monkey

机译:注视和平滑追踪信号在行为猴子的顶壁区域7m中相互作用

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Posterior parietal cortex is a region specialized for multimodal integration and coordinate transformations which converts sensory input to motor output. Eye position signals are crucial for such transformations, because they are needed to the inner reconstruction of a stable image of the outside world in spite of eye movements. Area 7m is a parietal area anatomically connected with oculomotor structures such as frontal eye field and superior colliculus. The aim of this study was to assess if neurons in area 7m possess activity related to eye movements, and if so, which sort of movements are processed. We recorded the extracellular activity of 7m neurons in two monkeys trained in both a smooth pursuit and a visually guided saccade task. The majority of neurons tested with the smooth pursuit task (16/17) showed directional selectivity influenced by the eye position. Moreover, these neurons were tuned to inward or outward pursuit with respect to the center of extra-personal visual space. About half of the cells (11/24) tested with the saccade task changed their activity during the pre-saccadic period. The majority of neurons presented post-saccadic activity: most of the cells showed a directionally-selective phasic response and a modulation by eye position during fixation (23/24). Overall, we observed that area 7m contains a population of neurons signaling smooth pursuit direction at certain eye position and saccade direction toward specific portions of the visual space. We hypothesize that area 7m might be involved in spatial map updating which can be used for spatial orientation.
机译:顶叶后皮质是专门用于多模式整合和坐标转换的区域,该转换将感觉输入转换为运动输出。眼睛位置信号对于此类转换至关重要,因为尽管有眼睛移动,但它们对于内部世界的稳定图像的内部重建是必需的。区域7m是解剖上与动眼结构(如额眼视野和上丘)相连的顶区。这项研究的目的是评估7m区域中的神经元是否具有与眼球运动有关的活动,如果是,则处理哪种运动。我们记录了两只猴子的7m神经元的细胞外活动,这些猴子在平稳的追逐和视觉引导的扫视任务中训练。用平滑追踪任务(16/17)测试的大多数神经元显示出方向选择性受眼睛位置的影响。而且,这些神经元相对于人外视觉空间的中心进行了向内或向外的追踪。扫视任务测试的大约一半细胞(11/24)在骚扰前的时期内改变了它们的活动。大多数神经元表现出s声后的活动:大多数细胞在固定过程中表现出方向选择性的相位反应和眼睛位置的调节(23/24)。总体而言,我们观察到7m区域包含一群神经元,这些神经元在某些眼睛位置发出了平滑的追踪方向,并向视觉空间的特定部分扫视了方向。我们假设7m区域可能参与了可用于空间定位的空间地图更新。

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