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单个猴皮质运动神经元细胞在目标肌肉中不同活动水平的影响。

The influence of single monkey cortico-motoneuronal cells at different levels of activity in target muscles.

作者信息

Bennett K M, Lemon R N

机构信息

Department of Anatomy, Cambridge University.

出版信息

J Physiol. 1994 Jun 1;477(Pt 2):291-307. doi: 10.1113/jphysiol.1994.sp020191.

Abstract
  1. This study assessed the facilitation by cortico-motoneuronal (CM) cells of hand and forearm muscles at different levels of EMG activity. 2. Twenty-three CM cells were recorded in six hemispheres of four trained monkeys. CM cells were identified by the presence of post-spike facilitation (PSF) in spike-triggered averages (STAs) of their target muscles. Cell and muscle activity was recorded during performance of a low force (0.2-1.5 N) precision grip task between the index finger and thumb. The hold periods of this task lasted 1-1.5 s and provided segments of steady EMG activity. 3. The discharge activity of each CM cell, and the amplitude of the PSF produced in one or two target muscles, were compared across two to six different levels of EMG activity during the hold periods. 4. Of the forty-two CM cell-muscle combinations tested, twenty (48%) showed a significant increase in CM cell discharge rate with increased target muscle EMG activity (P < 0.001); three (7%) showed significant negative correlation; and no correlation was found for nineteen combinations (45%). 5. From a low to a high level of EMG activity (0.3-8.65% of the maximum EMG activity recorded), the absolute amount of facilitation produced by each CM cell increased by a factor of 1.2-32 (median value 3.7). This increase in facilitation occurred irrespective of the presence or absence of correlation between CM cell discharge rate and target muscle activity. 6. For thirty cell-muscle combinations in which a significant PSF could be measured at more than one level of EMG activity, the relative degree of facilitation remained constant in nine, increased in thirteen and decreased in seven combinations. In some cases saturation effects were evident. For ten combinations PSF was observed at high but not at low levels of EMG activity. 7. The changes in PSF amplitude with level of EMG activity were also present in STAs compiled from only those spikes with long interspike intervals (20-25 ms or greater). The results suggested that spikes with short interspike intervals did not make a significant contribution to the increase in PSF amplitude observed at the higher levels of EMG activity. 8. The changes in PSF amplitude with target muscle activity are probably explained best by changes at the spinal motoneuronal level, which set the response to the CM input. These changes may also reflect differences in the strength of synaptic connectivity made by a CM cell within the motoneurone pool of the target muscle.
摘要
  1. 本研究评估了皮质运动神经元(CM)细胞在不同肌电图(EMG)活动水平下对手部和前臂肌肉的易化作用。2. 在4只训练过的猴子的6个半球中记录了23个CM细胞。通过在其靶肌肉的触发平均放电(STA)中出现锋后易化(PSF)来识别CM细胞。在食指和拇指之间执行低力(0.2 - 1.5 N)精确抓握任务期间记录细胞和肌肉活动。该任务的保持期持续1 - 1.5秒,并提供稳定的EMG活动片段。3. 在保持期内,比较了每个CM细胞的放电活动以及在一或两个靶肌肉中产生的PSF幅度,跨越两到六个不同的EMG活动水平。4. 在测试的42个CM细胞 - 肌肉组合中,20个(48%)显示随着靶肌肉EMG活动增加,CM细胞放电率显著增加(P < 0.001);3个(7%)显示显著负相关;19个组合(45%)未发现相关性。5. 从低到高EMG活动水平(记录的最大EMG活动的0.3 - 8.65%),每个CM细胞产生的易化绝对量增加了1.2 - 32倍(中位数为3.7)。无论CM细胞放电率与靶肌肉活动之间是否存在相关性,这种易化增加都发生。6. 对于30个在多个EMG活动水平可测量到显著PSF的细胞 - 肌肉组合,9个组合的易化相对程度保持不变,13个增加,7个减少。在某些情况下,饱和效应明显。对于10个组合,在高EMG活动水平观察到PSF,但在低水平未观察到。7. 在仅由具有长峰间期(20 - 25毫秒或更长)的那些峰编制的STA中,也存在PSF幅度随EMG活动水平的变化。结果表明,具有短峰间期的峰对在较高EMG活动水平观察到的PSF幅度增加没有显著贡献。8. PSF幅度随靶肌肉活动的变化可能最好由脊髓运动神经元水平的变化来解释,脊髓运动神经元水平设定了对CM输入的反应。这些变化也可能反映了CM细胞在靶肌肉运动神经元池内形成的突触连接强度的差异。

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