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Journal of Biomechanical Engineering|October 19, 2000
Bicycle drive system dynamics: theory and experimental validationB J Fregly, F E Zajac, C A DairaghiGait & Posture|March 12, 2004
Muscle force redistributes segmental power for body progression during walkingR R Neptune, F E Zajac, S A KautzJournal of Biomechanics|January 1, 1990
A musculoskeletal model of the human lower extremity: the effect of muscle, tendon, and moment arm on the moment-angle relationship of musculotendon actuators at the hip, knee, and ankleM G Hoy, F E Zajac, M E GordonJournal of Biomechanics|May 22, 1998
Using cine phase contrast magnetic resonance imaging to non-invasively study in vivo knee dynamicsF T Sheehan, F E Zajac, J E DraceBrain Research|December 24, 1984
Kinematic and EMG reactions to imposed interlimb phase alterations during bipedal cyclingC C Boylls, M R Zomlefer, F E ZajacThe Journal of Experimental Biology|April 1, 1981
Hindlimb muscular activity, kinetics and kinematics of cats jumping to their maximum achievable heightsF E Zajac, M R Zomlefer, W S LevineJournal 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|January 1, 1984
Dependence of jumping performance on muscle properties when humans use only calf muscles for propulsionF E Zajac, R W Wicke, W S LevinePageof 8