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Mechanical properties and neural control of human hand motor units

机译:人体手动力单元的力学性能和神经控制

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摘要

AbstractMotor units serve both as the mechanical apparatus and the final stage of neural processing through which motor behaviours are enacted. Therefore, knowledge about the contractile properties and organization of the neural inputs to motor units supplying finger muscles is essential for understanding the control strategies underlying the diverse motor functions of the human hand. In this brief review, basic contractile properties of motor units residing in human hand muscles are described. Hand motor units are not readily categorized into the classical physiological types as established in the cat gastrocnemius muscle. In addition, the distribution of descending synaptic inputs to motor nuclei supplying different hand muscles is outlined. Motor neurons innervating intrinsic muscles appear to have relatively independent lines of input from supraspinal centres whereas substantial divergence of descending input is seen across motor nuclei supplying extrinsic hand muscles. The functional significance of such differential organizations of descending inputs for the control of hand movements is discussed.
机译:摘要电机单元既是机械设备,也是神经处理的最后阶段,通过它可以制定运动行为。因此,对于理解提供给人手的各种运动功能的控制策略的知识,有关供应到手指肌肉的运动单元的神经输入的收缩特性和组织的知识是必不可少的。在这篇简短的综述中,描述了人类手部肌肉中运动单元的基本收缩特性。手部运动单元不容易归类为猫腓肠肌中建立的经典生理类型。另外,概述了递减的突触输入到供应不同手部肌肉的运动核的分布。支配固有肌的运动神经元似乎具有来自脊椎上中枢的相对独立的输入线,而在供应外在手部肌肉的运动核中看到下降的输入有很大的差异。讨论了这种降级输入的差分组织对于控制手部动作的功能意义。

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