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单关节振荡运动期间的虚拟轨迹、关节刚度和肢体固有频率的变化。

Virtual trajectories, joint stiffness, and changes in the limb natural frequency during single-joint oscillatory movements.

作者信息

Latash M L

机构信息

Department of Physical Medicine and Rehabilitation, Rush-Presbyterian St Luke's Medical Center, Chicago, IL 60612.

出版信息

Neuroscience. 1992 Jul;49(1):209-20. doi: 10.1016/0306-4522(92)90089-k.

Abstract

In the framework of the equilibrium-point hypothesis, virtual trajectories and patterns of joint stiffness were reconstructed during voluntary single-joint oscillatory movements in the elbow joint at a variety of frequencies and against two inertial loads. At low frequencies, virtual trajectories were in-phase with the actual joint trajectories. Joint stiffness changed at a doubled frequency. An increase in movement frequency and/or inertial load led to an increase in the difference between the peaks of the actual and virtual trajectories and in both peak and averaged values of joint stiffness. At a certain, critical frequency, virtual trajectory was nearly flat. Further increase in movement frequency led to a 180 degree phase shift between the actual and virtual trajectories. The assessed values of the natural frequency of the system "limb + manipulandum" were close to the critical frequencies for both low and high inertial loads. Peak levels and integrals of the electromyograms of two flexor and two extensor muscles changed monotonically with movement frequency without any special behavior at the critical frequencies. Nearly flat virtual trajectories at the natural frequency make physical sense as hypothetical control signals, unlike the electromyographic recordings, since a system at its natural frequency requires minimal central interference. Modulation of joint stiffness is assumed to be an important adaptive mechanism attenuating difference between the system's natural frequency and desired movement frequency. Virtual trajectory is considered a behavioral observable. Phase transitions between the virtual and actual trajectories are illustrations of behavioral discontinuities introduced by slow changes in a higher level control parameter, movement frequency. Relative phase shift between these two trajectories may be considered an order parameter.

摘要

在平衡点假设的框架下,在肘关节进行各种频率的自愿单关节摆动运动并对抗两种惯性负载时,重建了虚拟轨迹和关节刚度模式。在低频时,虚拟轨迹与实际关节轨迹同相。关节刚度以两倍频率变化。运动频率和/或惯性负载的增加导致实际轨迹与虚拟轨迹峰值之间的差异以及关节刚度的峰值和平均值均增加。在某个临界频率下,虚拟轨迹几乎是平坦的。运动频率的进一步增加导致实际轨迹与虚拟轨迹之间出现180度相移。 “肢体+操作对象”系统的固有频率评估值在低和高惯性负载下均接近临界频率。两块屈肌和两块伸肌的肌电图峰值水平和积分随运动频率单调变化,在临界频率处没有任何特殊行为。与肌电图记录不同,在固有频率下几乎平坦的虚拟轨迹作为假设的控制信号具有物理意义,因为处于其固有频率的系统需要最小的中枢干扰。关节刚度的调制被认为是一种重要的自适应机制,可减弱系统固有频率与期望运动频率之间的差异。虚拟轨迹被视为一种行为可观测值。虚拟轨迹与实际轨迹之间的相变是由较高层次控制参数(运动频率)的缓慢变化引入的行为不连续性的例证。这两条轨迹之间的相对相移可被视为一个序参量。

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