Literature DB >> 9787002

Task-dependent viscoelasticity of human multijoint arm and its spatial characteristics for interaction with environments.

H Gomi1, R Osu.   

Abstract

Human arm viscoelasticity is important in stabilizing posture, movement, and in interacting with objects. Viscoelastic spatial characteristics are usually indexed by the size, shape, and orientation of a hand stiffness ellipse. It is well known that arm posture is a dominant factor in determining the properties of the stiffness ellipse. However, it is still unclear how much joint stiffness can change under different conditions, and the effects of that change on the spatial characteristics of hand stiffness are poorly examined. To investigate the dexterous control mechanisms of the human arm, we studied the controllability and spatial characteristics of viscoelastic properties of human multijoint arm during different cocontractions and force interactions in various directions and amplitudes in a horizontal plane. We found that different cocontraction ratios between shoulder and elbow joints can produce changes in the shape and orientation of the stiffness ellipse, especially at proximal hand positions. During force regulation tasks we found that shoulder and elbow single-joint stiffness was each roughly proportional to the torque of its own joint, and cross-joint stiffness was correlated with elbow torque. Similar tendencies were also found in the viscosity-torque relationships. As a result of the joint stiffness changes, the orientation and shape of the stiffness ellipses varied during force regulation tasks as well. Based on these observations, we consider why we can change the ellipse characteristics especially in the proximal posture. The present results suggest that humans control directional characteristics of hand stiffness by changing joint stiffness to achieve various interactions with objects.

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Year:  1998        PMID: 9787002      PMCID: PMC6793558     

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  25 in total

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Journal:  J Neurophysiol       Date:  1990-12       Impact factor: 2.714

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Journal:  Exp Brain Res       Date:  1990       Impact factor: 1.972

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Journal:  Exp Brain Res       Date:  1996-10       Impact factor: 1.972

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Authors:  G L Gottlieb; G C Agarwal
Journal:  J Neurophysiol       Date:  1988-03       Impact factor: 2.714

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Authors:  E Bizzi; N Hogan; F A Mussa-Ivaldi; S Giszter
Journal:  Behav Brain Sci       Date:  1992-12       Impact factor: 12.579

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Journal:  J Neurophysiol       Date:  1988-11       Impact factor: 2.714

8.  Equilibrium-point control hypothesis examined by measured arm stiffness during multijoint movement.

Authors:  H Gomi
Journal:  Science       Date:  1996-04-05       Impact factor: 47.728

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Authors:  N Hogan
Journal:  Biol Cybern       Date:  1985       Impact factor: 2.086

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Authors:  F A Mussa-Ivaldi; N Hogan; E Bizzi
Journal:  J Neurosci       Date:  1985-10       Impact factor: 6.167

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  62 in total

1.  Learning the dynamics of reaching movements results in the modification of arm impedance and long-latency perturbation responses.

Authors:  T Wang; G S Dordevic; R Shadmehr
Journal:  Biol Cybern       Date:  2001-12       Impact factor: 2.086

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

Authors:  David W Franklin; Theodore E Milner
Journal:  Exp Brain Res       Date:  2003-07-05       Impact factor: 1.972

4.  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

5.  The passive stiffness of the wrist and forearm.

Authors:  Domenico Formica; Steven K Charles; Loredana Zollo; Eugenio Guglielmelli; Neville Hogan; Hermano I Krebs
Journal:  J Neurophysiol       Date:  2012-05-30       Impact factor: 2.714

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Authors:  Daniel R Lametti; David J Ostry
Journal:  J Neurophysiol       Date:  2010-06-16       Impact factor: 2.714

7.  Grip forces during fast point-to-point and continuous hand movements.

Authors:  Paolo Viviani; Francesco Lacquaniti
Journal:  Exp Brain Res       Date:  2015-07-31       Impact factor: 1.972

8.  Transfer and durability of acquired patterns of human arm stiffness.

Authors:  Mohammad Darainy; Nicole Malfait; Farzad Towhidkhah; David J Ostry
Journal:  Exp Brain Res       Date:  2005-11-19       Impact factor: 1.972

9.  Stability analysis of paraplegic standing while wearing an orthosis.

Authors:  Takahiro Kagawa; Hiroshi Fukuda; Fukuda Hiroshi; Yoji Uno; Uno Yoji
Journal:  Med Biol Eng Comput       Date:  2006-08-10       Impact factor: 2.602

10.  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

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