Muscle activation pattern during self-propelled treadmill walking

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Muscle Activation Patterns are Bilaterally Linked during Split - Belt Treadmill 2 Walking in Humans

Laboratory of Neuromotor Physiology, IRCCS Santa Lucia Foundation, 00179 Rome, Italy 8 9 Motor Control Laboratory, Research Center for Movement Control and Neuroplasticity, Dept. of 10 Kinesiology, K.U.Leuven, Belgium 11 12 Department of Orthopedics, First Affiliated Hospital of Fujian Medical University, Fuzhou, 13 Fujian, P.R. China 14 15 Department of Research, Development and Education, Sin...

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Muscle activation patterns are bilaterally linked during split-belt treadmill walking in humans.

There is growing evidence that human locomotion is controlled by flexibly combining a set of basic muscle activity patterns. To explore how these patterns are modified to cope with environmental constraints, 10 healthy young adults 1st walked on a split-belt treadmill at symmetric speeds of 4 and 6 km/h for 2 min. An asymmetric condition was then performed for 10 min in which treadmill speeds f...

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Self-paced versus fixed speed treadmill walking.

Instrumented treadmills are increasingly used in gait research, although the imposed walking speed is suggested to affect gait performance. A feedback-controlled treadmill that allows subjects to walk at their preferred speed, i.e. functioning in a self-paced (SP) mode, might be an attractive alternative, but could disturb gait through accelerations of the belt. We compared SP with fixed speed ...

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Speed-Dependent Modulation of Muscle Activity Based on Muscle Synergies during Treadmill Walking

The regulation of walking speed is easily achieved. However, the central nervous system (CNS) must coordinate numerous muscles in order to achieve a smooth and continuous control of walking speed. To control walking speed appropriately, the CNS may need to utilize a simplified system for the control of numerous muscles. Previous studies have revealed that the CNS may control walking via muscle ...

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Mechanically induced stumbling during human treadmill walking.

A new method to study the reactions to unexpected mechanical perturbations during human walking on a treadmill is presented. Perturbations consisted of an obstruction of the forward swinging foot during the early swing phase. These were caused by obstacles which were dropped on the treadmill in front of the subject. The timing of the perturbation was controlled by an electromagnet which release...

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ژورنال

عنوان ژورنال: Journal of Physical Therapy Science

سال: 2018

ISSN: 0915-5287,2187-5626

DOI: 10.1589/jpts.30.1069