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猫正常运动过程中记录到的肌肉传入神经的集合放电。

Ensemble firing of muscle afferents recorded during normal locomotion in cats.

作者信息

Prochazka A, Gorassini M

机构信息

Division of Neuroscience, University of Alberta, Edmonton, Alberta, Canada T6G 2S2.

出版信息

J Physiol. 1998 Feb 15;507 ( Pt 1)(Pt 1):293-304. doi: 10.1111/j.1469-7793.1998.293bu.x.

Abstract
  1. The main purpose of this study was to collate population data on the firing characteristics of muscle afferents recorded chronically during normal stepping in cats. 2. Ensemble firing profiles of forty-seven muscle spindle and tendon organ afferents were compiled from stored data. The relationships between the firing profiles and the displacement and force signals were analysed with the help of mathematical models of the response characteristics of spindle primary and secondary afferents and tendon organs. 3. Whereas the firing of hamstring spindle afferents could be predicted with reasonable accuracy from the length and velocity signals alone, the firing profiles of triceps surae spindle afferents deviated from the predicted profiles, particularly during electromyogram (EMG) activity. This indicated that the components of fusimotor action linked to extrafusal muscle activity were significant in triceps surae, possibly because this muscle is more strongly recruited in the cat step cycle. 4. From the limited data available, it was not possible to identify the 'best' or most general mathematical function to predict spindle secondary firing. In the two triceps surae spindle secondary units studied, firing was well predicted by using the simplest possible model, rate proportional to displacement, whereas in the hamstring spindle secondary data, a more complex linear transfer function was needed. The results of modelling the spindle secondary data were consistent with a modest amount of phasic, static fusimotor action linked to EMG activity. 5. The averaged ensemble of tendon organ afferent activity from the triceps surae gave predictions of whole-muscle force that agreed well with separate triceps force measurements in normal cat locomotion. This supports the idea that ensembles of tendon organ afferents signal whole-muscle force. 6. Our overall conclusion is that to a first approximation, large muscle afferents in the cat hindlimb signal muscle velocity, muscle length and muscle force, at least in movements of the speed and amplitude seen in locomotion.
摘要
  1. 本研究的主要目的是整理猫在正常行走过程中慢性记录的肌肉传入神经放电特性的群体数据。2. 从存储的数据中汇编了47条肌梭和腱器官传入神经的集合放电图谱。借助肌梭初级和次级传入神经以及腱器官反应特性的数学模型,分析了放电图谱与位移和力信号之间的关系。3. 虽然仅根据长度和速度信号就能较为准确地预测绳肌梭传入神经的放电,但小腿三头肌梭传入神经的放电图谱与预测图谱存在偏差,尤其是在肌电图(EMG)活动期间。这表明在小腿三头肌中,与梭外肌活动相关的融合运动作用成分很显著,可能是因为该肌肉在猫的步周期中被更强地募集。4. 根据现有的有限数据,无法确定预测梭内肌次级放电的“最佳”或最通用的数学函数。在所研究的两个小腿三头肌梭内肌次级单位中,使用最简单的模型(放电率与位移成正比)就能很好地预测放电,而在绳肌梭内肌数据中,则需要更复杂的线性传递函数。对梭内肌次级数据建模的结果与少量与EMG活动相关的相位性、静态融合运动作用一致。5. 小腿三头肌腱器官传入神经活动的平均集合给出了全肌肉力的预测值,与正常猫运动时单独测量的小腿三头肌力量吻合良好。这支持了腱器官传入神经集合信号全肌肉力的观点。6. 我们的总体结论是,初步估计,猫后肢的大肌肉传入神经至少在运动中所见的速度和幅度的运动中,能信号化肌肉速度、肌肉长度和肌肉力。

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