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在具有正交弯曲的记忆运动轨迹之前的运动皮层活动。

Motor cortical activity preceding a memorized movement trajectory with an orthogonal bend.

作者信息

Ashe J, Taira M, Smyrnis N, Pellizzer G, Georgakopoulos T, Lurito J T, Georgopoulos A P

机构信息

Brain Sciences Center (11B), Veterans Affairs Medical Center, Minneapolis, MN 55417.

出版信息

Exp Brain Res. 1993;95(1):118-30. doi: 10.1007/BF00229661.

Abstract

Two monkeys were trained to make an arm movement with an orthogonal bend, first up and then to the left ([symbol: see text]), following a waiting period. They held a two-dimensional manipulandum over a spot of light at the center of a planar working surface. When this light went off, the animals were required to hold the manipulandum there for 600-700 ms and then move the handle up and to the left to receive a liquid reward. There were no external signals concerning the "go" time or the trajectory of the movement. It was hypothesized that during that period signs of directional processing relating to the upcoming movement would be identified in the motor cortex. Following 20 trials of the memorized movement trajectory, 40 trials of visually triggered movements in radially arranged directions were performed. The activity of 137 single cells in the motor cortex was recorded extracellularly during performance of the task. It was found that 62.8% of the cells changed activity during the memorized waiting period. During the waiting period, the population vector (Georgopoulos et al. 1983, 1984) began to grow approximately 130 ms after the center light was turned off; it pointed first in the direction of the second part of the memorized movement (<--) and then rotated clockwise towards the direction of the initial part of the movement (increases). These findings indicate processing of directional information during the waiting period preceding the memorized movement. This conclusion was supported by the results of experiments in ten human subjects, who performed the same memorized movement ([symbol: see text]). In 10% of the trials a visual stimulus was shown in radially arranged directions in which the subjects had to move; this stimulus was shown at 0, 200, and 400 ms from the time the center light was turned off. We found that as the interval increased the reaction time shortened for the visual stimulus that was in the same direction as the upward component of the memorized movement.

摘要

训练了两只猴子,使其在经过一段等待期后,做出带有正交弯曲的手臂动作,先是向上,然后向左([符号:见原文])。它们在一个平面工作表面中心的光点上方握住一个二维操作手柄。当这个光点熄灭时,动物们需要将操作手柄在那里保持600 - 700毫秒,然后向上并向左移动手柄以获得液体奖励。没有关于“开始”时间或运动轨迹的外部信号。据推测,在那段时间里,与即将到来的运动相关的方向处理迹象将在运动皮层中被识别出来。在进行了20次记忆运动轨迹的试验后,进行了40次沿径向排列方向的视觉触发运动试验。在任务执行过程中,细胞外记录了运动皮层中137个单细胞的活动。发现62.8%的细胞在记忆等待期内活动发生了变化。在等待期内,群体向量(乔治opoulos等人,1983年,1984年)在中心光点熄灭后约130毫秒开始增长;它首先指向记忆运动第二部分的方向(<--),然后顺时针旋转朝向运动初始部分的方向(增加)。这些发现表明在记忆运动之前的等待期内存在方向信息处理。这一结论得到了十名人类受试者实验结果的支持,他们执行相同的记忆运动([符号:见原文])。在10%的试验中,沿受试者必须移动的径向排列方向显示视觉刺激;该刺激在中心光点熄灭后的0、200和400毫秒时显示。我们发现,随着间隔时间增加,与记忆运动向上分量方向相同的视觉刺激的反应时间缩短。

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