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Motor Control|February 17, 2000
General coordination principles elucidated by forward dynamics: minimum fatique does not explain muscle excitation in dynamic tasksS A Kautz, R R Neptune, F E ZajacGait & Posture|March 12, 2004
Muscle force redistributes segmental power for body progression during walkingR R Neptune, F E Zajac, S A KautzJournal of Biomechanics|April 28, 2004
Muscle mechanical work requirements during normal walking: the energetic cost of raising the body's center-of-mass is significantR R Neptune, F E Zajac, S A KautzJournal of Biomechanics|February 1, 2000
Muscle contributions to specific biomechanical functions do not change in forward versus backward pedalingR R Neptune, S A Kautz, F E ZajacJournal of Biomechanics|October 24, 2001
Contributions of the individual ankle plantar flexors to support, forward progression and swing initiation during walkingR R Neptune, S A Kautz, F E ZajacJournal of Biomechanics|July 28, 2005
Muscle contributions to support during gait in an individual with post-stroke hemiparesisJ S Higginson, F E Zajac, R R Neptune, et al.Exercise and Sport Sciences Reviews|May 8, 2001
Muscle activation and deactivation dynamics: the governing properties in fast cyclical human movement performance?R R Neptune, S A KautzClinical Biomechanics (Bristol, Avon)|June 1, 2000
Knee joint loading in forward versus backward pedaling: implications for rehabilitation strategiesR R Neptune, S A KautzGait & Posture|November 29, 2005
Effect of equinus foot placement and intrinsic muscle response on knee extension during stanceJ S Higginson, F E Zajac, R R Neptune, et al.Journal of Neurophysiology|February 3, 2006
Does unilateral pedaling activate a rhythmic locomotor pattern in the nonpedaling leg in post-stroke hemiparesis?S A Kautz, C Patten, R R NeptunePageof 10