Scott J J, Kümmel H, Illert M
Department of Cell Physiology and Pharmacology, University of Leicester, UK.
Neurosci Lett. 1995 Apr 28;190(1):1-4. doi: 10.1016/0304-3940(95)11485-f.
The innervation of muscle spindles by skeletofusimotor (beta) axons has been compared in two long digit extensor muscles with three elbow extensor muscles of the cat forelimb. The proportion of muscle spindle poles with p1-endplates was analysed in silver impregnated teased material. The proximal and distal muscles displayed a significant difference in their proportion of muscle spindle poles with p1-endplates. The distal muscles had an estimated proportion of more than 70% beta innervation of their muscle spindles, the proximal muscles of 41-47%. This difference is discussed with respect to the different circuitry of the motoneurones. We suggest that the high proportion of beta-innervated spindles in distal muscles obtained with the absence of a recurrent inhibitory system in the innervating motoneurones [18] serves the execution of manipulative movements.
已对猫前肢的两块长指伸肌和三块肘伸肌中骨梭肌运动(β)轴突对肌梭的神经支配进行了比较。在银浸染的 teased 材料中分析了具有 p1 终板的肌梭极的比例。近端和远端肌肉在具有 p1 终板的肌梭极比例上存在显著差异。远端肌肉的肌梭估计有超过 70%的β神经支配,近端肌肉为 41 - 47%。针对运动神经元的不同回路对这种差异进行了讨论。我们认为,在支配运动神经元中不存在反馈抑制系统的情况下,远端肌肉中β神经支配的梭形肌比例较高[18],这有助于执行精细动作。