The asynchrony of bimanual movements was investigated. Right- and left-handers traced simple geometrical patterns (ellipses) continuously with both hands. All combinations of the direction of rotation in each hand were executed at different rhythms. Geometrically, performances were largely independent of manual dominance. However, by comparing the passage times at homologous positions. the authors found that the dominant hand led the nondominant one by about 25 ms. The asynchrony was affected by neither movement type nor rhythm. The variability of the asynchrony varied along the trajectory, with well-defined maxima and minima. The variability profiles for movements that engaged homologous muscles differed markedly from those that engaged nonhomologous muscles. The authors discuss the hypothesis that bimanual periodic movements are timed by a lateralized functional module and asynchrony is due to the necessity of transmitting time-keeping information to the other hemisphere

Stucchi, N., Viviani, P. (1993). Cerebral Dominance and Asynchrony Between Bimanual Two-Dimensional Movements. JOURNAL OF EXPERIMENTAL PSYCHOLOGY-HUMAN PERCEPTION AND PERFORMANCE, 19(6), 1200-1220 [10.1037/0096-1523.19.6.1200].

Cerebral Dominance and Asynchrony Between Bimanual Two-Dimensional Movements

STUCCHI, NATALE ADOLFO;
1993

Abstract

The asynchrony of bimanual movements was investigated. Right- and left-handers traced simple geometrical patterns (ellipses) continuously with both hands. All combinations of the direction of rotation in each hand were executed at different rhythms. Geometrically, performances were largely independent of manual dominance. However, by comparing the passage times at homologous positions. the authors found that the dominant hand led the nondominant one by about 25 ms. The asynchrony was affected by neither movement type nor rhythm. The variability of the asynchrony varied along the trajectory, with well-defined maxima and minima. The variability profiles for movements that engaged homologous muscles differed markedly from those that engaged nonhomologous muscles. The authors discuss the hypothesis that bimanual periodic movements are timed by a lateralized functional module and asynchrony is due to the necessity of transmitting time-keeping information to the other hemisphere
Articolo in rivista - Articolo scientifico
motor control, bimanual coordination. cerebral dominance
English
1993
19
6
1200
1220
none
Stucchi, N., Viviani, P. (1993). Cerebral Dominance and Asynchrony Between Bimanual Two-Dimensional Movements. JOURNAL OF EXPERIMENTAL PSYCHOLOGY-HUMAN PERCEPTION AND PERFORMANCE, 19(6), 1200-1220 [10.1037/0096-1523.19.6.1200].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/34393
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