Literature DB >> 12845511

Adaptive control of stiffness to stabilize hand position with large loads.

David W Franklin1, Theodore E Milner.   

Abstract

The goal of this work was to investigate stability in relation to the magnitude and direction of forces applied by the hand. The endpoint stiffness and joint stiffness of the arm were measured during a postural task in which subjects exerted up to 30% maximum voluntary force in each of four directions while controlling the position of the hand. All four coefficients of the joint stiffness matrix were found to vary linearly with both elbow and shoulder torque. This contrasts with the results of a previous study, which employed a force control task and concluded that the joint stiffness coefficients varied linearly with either shoulder or elbow torque but not both. Joint stiffness was transformed into endpoint stiffness to compare the effect on stability as endpoint force increased. When the joint stiffness coefficients were modeled as varying with the net torque at only one joint, as in the previous study, we found that hand position became unstable if endpoint force exceeded about 22 N in a specific direction. This did not occur when the joint stiffness coefficients were modeled as varying with the net torque at both joints, as in the present study. Rather, hand position became increasingly more stable as endpoint force increased for all directions of applied force. Our analysis suggests that co-contraction of biarticular muscles was primarily responsible for the increased stability. This clearly demonstrates how the central nervous system can selectively adapt the impedance of the arm in a specific direction to stabilize hand position when the force applied by the hand has a destabilizing effect in that direction.

Mesh:

Year:  2003        PMID: 12845511     DOI: 10.1007/s00221-003-1540-3

Source DB:  PubMed          Journal:  Exp Brain Res        ISSN: 0014-4819            Impact factor:   1.972


  25 in total

1.  Effects of voluntary force generation on the elastic components of endpoint stiffness.

Authors:  E J Perreault; R F Kirsch; P E Crago
Journal:  Exp Brain Res       Date:  2001-12       Impact factor: 1.972

2.  Functional significance of stiffness in adaptation of multijoint arm movements to stable and unstable dynamics.

Authors:  David W Franklin; Etienne Burdet; Rieko Osu; Mitsuo Kawato; Theodore E Milner
Journal:  Exp Brain Res       Date:  2003-05-29       Impact factor: 1.972

3.  Task-dependent changes in the response of human wrist joints to mechanical disturbance.

Authors:  F Doemges; P M Rack
Journal:  J Physiol       Date:  1992-02       Impact factor: 5.182

4.  Human arm stiffness characteristics during the maintenance of posture.

Authors:  T Flash; F Mussa-Ivaldi
Journal:  Exp Brain Res       Date:  1990       Impact factor: 1.972

5.  The control of stable postures in the multijoint arm.

Authors:  J McIntyre; F A Mussa-Ivaldi; E Bizzi
Journal:  Exp Brain Res       Date:  1996-07       Impact factor: 1.972

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Journal:  J Neurophysiol       Date:  1976-09       Impact factor: 2.714

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Journal:  J Biomech       Date:  1982       Impact factor: 2.712

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Authors:  H Gomi; M Kawato
Journal:  Biol Cybern       Date:  1997-03       Impact factor: 2.086

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Authors:  T Tsuji; P G Morasso; K Goto; K Ito
Journal:  Biol Cybern       Date:  1995       Impact factor: 2.086

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Authors:  F Lacquaniti; M Carrozzo; N A Borghese
Journal:  J Neurophysiol       Date:  1993-05       Impact factor: 2.714

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  39 in total

1.  Multijoint dynamics and postural stability of the human arm.

Authors:  Eric J Perreault; Robert F Kirsch; Patrick E Crago
Journal:  Exp Brain Res       Date:  2004-04-27       Impact factor: 1.972

2.  Accuracy of internal dynamics models in limb movements depends on stability.

Authors:  Theodore E Milner
Journal:  Exp Brain Res       Date:  2004-07-09       Impact factor: 1.972

3.  Testing hypotheses and the advancement of science: recent attempts to falsify the equilibrium point hypothesis.

Authors:  Anatol G Feldman; Mark L Latash
Journal:  Exp Brain Res       Date:  2004-10-15       Impact factor: 1.972

4.  Asymmetric interjoint feedback contributes to postural control of redundant multi-link systems.

Authors:  Nathan E Bunderson; Lena H Ting; Thomas J Burkholder
Journal:  J Neural Eng       Date:  2007-05-04       Impact factor: 5.379

5.  Greater reliance on impedance control in the nondominant arm compared with the dominant arm when adapting to a novel dynamic environment.

Authors:  Christopher N Schabowsky; Joseph M Hidler; Peter S Lum
Journal:  Exp Brain Res       Date:  2007-07-05       Impact factor: 1.972

6.  Interactions with compliant loads alter stretch reflex gains but not intermuscular coordination.

Authors:  Eric J Perreault; Kuifu Chen; Randy D Trumbower; Gwyn Lewis
Journal:  J Neurophysiol       Date:  2008-02-20       Impact factor: 2.714

7.  Temporal evolution of "automatic gain-scaling".

Authors:  J Andrew Pruszynski; Isaac Kurtzer; Timothy P Lillicrap; Stephen H Scott
Journal:  J Neurophysiol       Date:  2009-05-13       Impact factor: 2.714

8.  Interactions between limb and environmental mechanics influence stretch reflex sensitivity in the human arm.

Authors:  Matthew A Krutky; Vengateswaran J Ravichandran; Randy D Trumbower; Eric J Perreault
Journal:  J Neurophysiol       Date:  2009-11-11       Impact factor: 2.714

9.  System identification of physiological systems using short data segments.

Authors:  Daniel Ludvig; Eric J Perreault
Journal:  IEEE Trans Biomed Eng       Date:  2012-09-28       Impact factor: 4.538

10.  Optimal workloop energetics of muscle-actuated systems: an impedance matching view.

Authors:  Waleed A Farahat; Hugh M Herr
Journal:  PLoS Comput Biol       Date:  2010-06-03       Impact factor: 4.475

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