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首页> 外文期刊>Journal of Neurophysiology >Integration of motor and visual information in the parietal area 5 during locomotion.
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Integration of motor and visual information in the parietal area 5 during locomotion.

机译:运动过程中,运动和视觉信息在顶区5的整合。

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摘要

The parietal cortex receives both visual- and motor-related information and is believed to be one of the sites of visuo-motor coordination. This study for the first time characterizes integration of visual and motor information in activity of neurons of parietal area 5 during locomotion under conditions that require visuo-motor coordination. The activity of neurons was recorded in cats during walking on a flat surface-a task with no visuo-motor coordination required (flat locomotion), walking along a horizontal ladder or a series of barriers-a task requiring visuo-motor coordination for an accurate foot placement on surface that is heterogeneous along the direction of progression (ladder and barriers locomotion), and walking along a narrow pathway-a task requiring visuo-motor coordination on surface homogeneous along the direction of progression (narrow locomotion). During flat locomotion, activity of 66% of the neurons was modulated in rhythm of stepping, usually with one peak per cycle. During ladderand barrier locomotion, the proportion of rhythmically active neurons significantly increased, their modulation became stronger, and the majority of neurons had two peaks of activity per cycle. During narrow locomotion, however, the activity of neurons was similar to that during flat locomotion. We concluded that, during locomotion, parietal area 5 integrates two types of information: signals about the activity of basic locomotion mechanisms and signals about heterogeneity of the surface along the direction of progression. We describe here the modes of integration of these two types of information during locomotion.
机译:顶叶皮层接收视觉和运动相关的信息,并且被认为是视觉-运动协调的部位之一。这项研究首次将视觉和运动信息整合到需要视觉-运动协调的运动过程中顶叶5区神经元活动中。猫在平坦的表面行走过程中记录了神经元的活动-无需视觉运动协调(平坦运动)的任务,沿着水平梯或一系列障碍物行走-需要视觉运动协调以确保准确的任务将脚放置在沿行进方向(梯子和障碍物的运动)是异质的表面上,并沿着狭窄的路径行走-这是一项任务,需要在沿行进方向的同质表面上进行视觉运动协调(窄运动)。在平坦的运动过程中,有66%的神经元的活动以步进的节奏进行调节,通常每个周期一个峰值。在梯子和障碍物运动期间,节律性活动神经元的比例显着增加,其调节变得更强,并且大多数神经元每个周期都有两个活动峰。但是,在狭窄的运动中,神经元的活动与平坦的运动中的相似。我们得出的结论是,在运动过程中,顶区5整合了两种类型的信息:有关基本运动机制活动的信号和有关沿前进方向表面异质性的信号。我们在这里描述运动过程中这两种信息的整合方式。

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