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灵长类动物红核中的运动坐标:与肌肉激活和运动学变量的优先关系。

Motor co-ordinates in primate red nucleus: preferential relation to muscle activation versus kinematic variables.

作者信息

Miller L E, Houk J C

机构信息

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

出版信息

J Physiol. 1995 Oct 15;488 ( Pt 2)(Pt 2):533-48. doi: 10.1113/jphysiol.1995.sp020988.

Abstract
  1. Magnocellular red nucleus (RNm) neurones (n = 158) were recorded from two macaque monkeys during a tracking task using one of six single-degree-of-freedom manipulanda. This task allowed us to study discrete movements about most of the joints of the arm. Single-unit, kinematic and electromyographic (EMG) signals from ten to twenty muscles of the upper limb were collected for approximately 2 min while the monkey used a given manipulandum. Movements about different joints were studied by switching among manipulanda. 2. Cross-correlation functions were calculated between RNm discharge rate and the kinematic variables, position and velocity, and between RNm and each of the EMG signals. Statistically significant cross-correlation peaks were found in 24% of the position correlations, 22% of the velocity correlations and 32% of the EMG correlations. The highest correlations were for EMG, reaching above 0.60. The peak correlation provided an effective means of identifying neurones with strong functional relations to one or more movements and/or muscles. These could then be analysed in detail, on a trial-by-trial basis. 3. The similarity between the dynamics of EMG and velocity signals of many highly practised movements makes it difficult to determine which might be the more likely target of RNm control. Therefore, we sought exceptions to this pattern, in order to distinguish between these two possible modes of control. For example, at the end of a movement, muscles occasionally remained active as velocity approached zero. Small corrective movements were often accompanied by a disproportionately large EMG. During these periods, RNm activity usually followed the time course of one or more of the EMG signals as opposed to the velocity signal. In the majority of cases, RNm responses were bidirectional, less frequently unidirectional and rarely reciprocal. These patterns were similar to the patterns of muscle activity. They did not resemble the velocity signals unless the latter were passed through a rectifier. 4. The results support the hypothesis that the red nucleus generates motor commands in a muscle-based co-ordinate system. Covariation between RNm discharge and velocity may result indirectly from correlations between muscle activation and movement. We discuss how the cerebellar cortex might convert the distributed representation of target position, known to be present in the posterior parietal cortex, directly into dynamic, muscle-based commands in the rubro-cortico-cerebellar limb premotor network.
摘要
  1. 在两只猕猴执行追踪任务期间,使用六个单自由度操作器之一,记录了158个大细胞红核(RNm)神经元。该任务使我们能够研究手臂大多数关节的离散运动。当猴子使用特定操作器时,收集来自上肢十到二十块肌肉的单单元、运动学和肌电图(EMG)信号约2分钟。通过在不同操作器之间切换来研究不同关节的运动。2. 计算了RNm放电率与运动学变量(位置和速度)之间以及RNm与每个EMG信号之间的互相关函数。在24%的位置相关性、22%的速度相关性和32%的EMG相关性中发现了具有统计学意义的互相关峰值。与EMG的相关性最高,超过了0.60。峰值相关性为识别与一个或多个运动和/或肌肉具有强功能关系的神经元提供了一种有效方法。然后可以逐次试验地对这些神经元进行详细分析。3. 许多高度熟练运动的EMG和速度信号动态之间的相似性使得难以确定哪一个可能是RNm控制的更可能目标。因此,我们寻找这种模式的例外情况,以便区分这两种可能的控制模式。例如,在运动结束时,当速度接近零时,肌肉偶尔仍保持活跃。小的校正运动通常伴随着不成比例的大EMG。在这些时期,RNm活动通常跟随一个或多个EMG信号的时间进程,而不是速度信号。在大多数情况下,RNm反应是双向的,较少是单向的,很少是相互的。这些模式与肌肉活动模式相似。它们与速度信号不同,除非后者通过整流器。4. 结果支持这样的假设,即红核在基于肌肉的协调系统中生成运动指令。RNm放电与速度之间的协变可能间接源于肌肉激活与运动之间的相关性。我们讨论了小脑皮层如何将已知存在于后顶叶皮层的目标位置的分布式表示直接转换为红核 - 皮层 - 小脑肢体运动前网络中基于动态肌肉的指令。

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