Independent control of joint stiffness in the framework of the equilibrium-point hypothesis
- 1 August 1992
- journal article
- Published by Springer Nature in Biological Cybernetics
- Vol. 67 (4) , 377-384
- https://doi.org/10.1007/bf02414893
Abstract
In the framework of the equilibrium-point hypothesis, virtual trajectories and joint stiffness patterns have been reconstructed during two motor tasks practiced against a constant bias torque. One task required a voluntary increase in joint stiffness while preserving the original joint position. The other task involved fast elbow flexions over 36°. Joint stiffness gradually subsided after the termination of fast movements. In both tasks, the external torque could slowly and unexpectedly change. The subjects were required not to change their motor commands if the torque changed, i.e. “to do the same no matter what the motor did”. In both tasks, changes in joint stiffness were accompanied by unchanged virtual trajectories that were also independent of the absolute value of the bias torque. By contrast, the intercept of the joint compliant characteristic with the angle axis,r(t)-function, has demonstrated a clear dependence upon both the level of coactivation and external load. We assume that a template virtual trajectory is generated at a certain level of the motor hierarchy and is later scaled taking into account some commonly changing dynamic factors of the movement execution, for example, external load. The scaling leads to the generation of commands to the segmental structures that can be expressed, according to the equilibrium-point hypothesis, as changes in the thresholds of the tonic stretch reflex for corresponding muscles.Keywords
This publication has 20 references indexed in Scilit:
- Virtual trajectories, joint stiffness, and changes in the limb natural frequency during single-joint oscillatory movementsNeuroscience, 1992
- Virtual trajectories of single-joint movements performed under two basic strategiesNeuroscience, 1992
- An Equilibrium-Point Model for Fast, Single-Joint Movement: I. Emergence of Strategy-Dependent EMG PatternsJournal of Motor Behavior, 1991
- An Equilibrium-Point Model for Fast, Single-Joint Movement: II. Similarity of Single-Joint Isometric and Isotonic Descending CommandsJournal of Motor Behavior, 1991
- Reconstruction of shifting elbow joint compliant characteristics during fast and slow movementsNeuroscience, 1991
- Compliant characteristics of single joints: Preservation of equifinality with phasic reactionsBiological Cybernetics, 1990
- Strategies for the control of voluntary movements with one mechanical degree of freedomBehavioral and Brain Sciences, 1989
- Adaptability of innate motor patterns and motor control mechanismsBehavioral and Brain Sciences, 1986
- Arm trajectory formation in monkeysExperimental Brain Research, 1982
- Superposition of motor programs—I. Rhythmic forearm movements in manNeuroscience, 1980