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苍白球对猴子手臂运动的影响。III. 运动相关信息的时间安排。

Influence of the globus pallidus on arm movements in monkeys. III. Timing of movement-related information.

作者信息

Anderson M E, Horak F B

出版信息

J Neurophysiol. 1985 Aug;54(2):433-48. doi: 10.1152/jn.1985.54.2.433.

Abstract

Monkeys were trained to make a visually triggered arm-reaching movement to a lighted button in a simple reaction-time paradigm, during which the reaction time (RT) and movement time (MT) were measured. Stimulus trains of varying duration were applied at various times before and during the movement at locations in the globus pallidus where application of long stimulus trains caused increased MTs. A critical stimulus period was identified during which stimulus application effectively prolonged MTs. The activity of pallidal neurons was examined during performance of the same behavioral task. More than 60% of the neurons examined showed task-related changes in activity that began before or during the reaching movement. For 45% of these cells, the initial change in firing occurred during the critical stimulus period, 50-150 ms before mechanically detected movement. Comparison of the critical stimulus period, the time of task-related changes in the discharge of pallidal neurons, and the time of EMG activity in muscles acting at the back, shoulder, elbow, and wrist revealed that both the critical stimulus period and changes in neuronal discharge occurred at or after initial muscle activation and during the buildup of EMG activity. These data are consistent with a model in which the globus pallidus plays a role in scaling the magnitude of muscle activity that determines movement velocity without affecting the initiation or sequential organization of the programmed motor output.

摘要

在简单反应时范式中,训练猴子根据视觉触发做出伸手动作,触碰亮起的按钮,在此过程中测量反应时(RT)和运动时(MT)。在苍白球的不同位置,于运动前和运动过程中的不同时间施加不同持续时间的刺激序列,其中施加长时间刺激序列会导致MT增加。确定了一个关键刺激期,在此期间施加刺激能有效延长MT。在执行相同行为任务期间检查苍白球神经元的活动。超过60%的被检查神经元表现出与任务相关的活动变化,这些变化在伸手动作之前或期间开始。对于其中45%的细胞,放电的初始变化发生在关键刺激期,即在机械检测到运动前50 - 150毫秒。比较关键刺激期、苍白球神经元放电与任务相关变化的时间,以及背部、肩部、肘部和腕部肌肉的肌电图(EMG)活动时间,结果显示关键刺激期和神经元放电变化均发生在初始肌肉激活之后或期间,以及EMG活动增强期间。这些数据与一个模型相符,即苍白球在调节决定运动速度的肌肉活动幅度方面发挥作用,而不影响程序化运动输出的启动或顺序组织。

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