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灵长类动物红核放电编码肢体肌肉活动的动态变化。

Primate red nucleus discharge encodes the dynamics of limb muscle activity.

作者信息

Miller L E, Sinkjaer T

机构信息

Department of Physiology, Northwestern University Medical School, Chicago, Illinois 60611, USA.

出版信息

J Neurophysiol. 1998 Jul;80(1):59-70. doi: 10.1152/jn.1998.80.1.59.

Abstract

We studied the dynamical relationship between magnocellular red nucleus (RNm) discharge and electromyographic (EMG) activity of 10-15 limb muscles in two monkeys during voluntary limb movement. Recordings were made from 158 neurons during two different kinds of limb movement tasks. One was a tracking task in which the subjects were required to acquire targets displayed on an oscilloscope by rotating one of six different single degree of freedom manipulanda. During this task, we recorded the angular position of the manipulandum. The monkeys also were trained in several free-form food-retrieval tasks that were much less constrained mechanically. There was generally significantly greater neuronal discharge during the free-form tasks than during the tracking task. During both types of tasks, cross-correlation and impulse response functions calculated between RNm and EMG were predominantly pulse-shaped, indicating that the dynamics of the RNm discharge were very similar to those of the muscle activity. There was no evidence during either task for a substantial dynamical transformation (e.g., integration) between the two signals as had been previously suggested. In only 15% of the cases, did these correlations have step or pulse-step dynamics. There was a relatively broad, unimodal distribution of lag times between RNm and EMG, based on the time of occurrence of the peak correlation. During tracking, the mode of this distribution was approximately 50 ms, with 80% of the lags falling between -100 and 200 ms. During the free-form task, the mode was between 0 and 20 ms, with 65% of the lags between -100 and 200 ms. A positive lag indicates that RNm discharge preceded EMG. The shape and timing of both the cross-correlation and the impulse response functions were consistent with a model in which many RNm neurons contribute mutually correlated signals which are simply summed within the spinal cord to produce a muscle activation signal.

摘要

我们研究了两只猴子在自愿肢体运动过程中,大细胞红核(RNm)放电与10 - 15块肢体肌肉的肌电图(EMG)活动之间的动态关系。在两种不同的肢体运动任务中,对158个神经元进行了记录。一种是跟踪任务,要求受试者通过旋转六个不同的单自由度操作器之一来获取示波器上显示的目标。在此任务期间,我们记录了操作器的角位置。猴子还接受了几种自由度更高的食物获取任务训练,这些任务在机械方面的限制要少得多。通常,在自由度更高的任务中神经元放电比在跟踪任务中显著更多。在两种任务类型中,计算得到的RNm与EMG之间的互相关和脉冲响应函数主要呈脉冲形状,这表明RNm放电的动态变化与肌肉活动的动态变化非常相似。在任何一种任务中,都没有证据表明如先前所提出的那样,两个信号之间存在实质性的动态转换(例如积分)。在仅15%的情况下,这些相关性具有阶跃或脉冲 - 阶跃动态。基于峰值相关性出现的时间,RNm与EMG之间的滞后时间分布相对较宽,呈单峰分布。在跟踪过程中,该分布的众数约为50毫秒,80%的滞后时间在 - 100至200毫秒之间。在自由度更高的任务中,众数在0至20毫秒之间,65%的滞后时间在 - 100至200毫秒之间。正的滞后表示RNm放电先于EMG。互相关和脉冲响应函数的形状和时间与一个模型一致,在该模型中,许多RNm神经元贡献相互关联的信号,这些信号在脊髓内简单相加以产生肌肉激活信号。

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