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Feedforward and feedback control for gait and balance
Shuqi Zhang,
Li Li
Health Sciences & Kinesiology
Louisiana State University
Research output
:
Contribution to book or proceeding
›
Chapter
›
peer-review
3
Scopus citations
Overview
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Dive into the research topics of 'Feedforward and feedback control for gait and balance'. Together they form a unique fingerprint.
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Medicine and Dentistry
Standing
100%
Elderly Population
66%
Patient Population
66%
Rehabilitation Engineering
66%
Nerve Conduction Velocity
66%
Deterioration
33%
Limb
33%
Proprioception
33%
Peripheral Neuropathy
33%
Foot Sole
33%
Sensation
33%
Muscle Strength
33%
Nerve Function
33%
Central Nervous System
33%
Sensory System
33%
Motor Nerve Conduction
33%
Signal Transduction
33%
Skin Sensation
33%
Sensory Organ
33%
Vestibular System
33%
Sensory Nerve Conduction
33%
Neurophysiological Recruitment
33%
Motor Nerve
33%
Neuroscience
Postural Control
100%
Cell Signaling
33%
Neurophysiological Recruitment
33%
Central Nervous System
33%
Nerve Function
33%
Sensory Nerve Conduction
33%
Motor Nerve Conduction
33%
Nerve Conduction
33%
Peripheral Neuropathy
33%
Proprioception
33%
Sensory Organ
33%
Vestibular System
33%
Sensory Processing
33%
Pharmacology, Toxicology and Pharmaceutical Science
Deterioration
100%
Peripheral Neuropathy
100%