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Contributions of phase resetting and interlimb coordination to the adaptive control of hindlimb obstacle avoidance during locomotion in rats: a simulation study.

, , , , , , , , , , and . Biol. Cybern., 107 (2): 201-216 (2013)

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Contributions of phase resetting and interlimb coordination to the adaptive control of hindlimb obstacle avoidance during locomotion in rats: a simulation study., , , , , , , , , and 1 other author(s). Biol. Cybern., 107 (2): 201-216 (2013)Dynamical analysis of human standing model with cyclic motion., , , and . BioRob, page 627-631. IEEE, (2014)Kinematic analysis of low dimensional structure in walking and running., , , , , , , and . MHS, page 1-6. IEEE, (2015)Evaluation of the Phase-Dependent Rhythm Control of Human Walking Using Phase Response Curves., , , , , , and . PLoS Comput. Biol., (2016)A system model that focuses on kinematic synergy for understanding human control structure., , , and . ROBIO, page 378-383. IEEE, (2012)Autonomous Control of Reaching Movement by 'Mobility' Measure., , , and . J. Robotics Mechatronics, 19 (4): 448-458 (2007)Hindlimb splitbelt treadmill walking of a rat based on a neuromusculoskeletal model., , , , , , , and . BioRob, page 881-886. IEEE, (2014)Adaptive splitbelt treadmill walking of a biped robot using nonlinear oscillators with phase resetting., , , , , , and . Auton. Robots, 35 (1): 15-26 (2013)