Muscle Activation Patterns are Bilaterally Linked during Split - Belt Treadmill 2 Walking in Humans
نویسنده
چکیده
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, Sint Maartenskliniek, Nijmegen, 16 Netherlands 17 18 Centre of Space Bio-medicine, University of Rome Tor Vergata, 00173 Rome, Italy 19 20 Department of Systems Medicine, University of Rome Tor Vergata, 00133 Rome, Italy 21 22
منابع مشابه
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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Split-belt treadmill walking has been extensively utilized as a useful model to reveal the adaptability of human bipedal locomotion. While previous studies have clearly identified different types of locomotor adaptation, such as reactive and predictive adjustments, details of how the gait pattern would be adjusted are not fully understood. To gain further knowledge of the strategies underlying ...
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New walking patterns can be learned over short time scales (i.e., adapted in minutes) using a split-belt treadmill that controls the speed of each leg independently. This leads to storage of a modified motor pattern that is expressed as an aftereffect in regular walking conditions and must be de-adapted to return to normal. Here we asked whether the nervous system adapts a general walking patte...
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Human locomotion must be flexible in order to meet varied environmental demands. Alterations to the gait pattern occur on different time scales, ranging from fast, reactive adjustments to slower, more persistent adaptations. A recent study in humans demonstrated that the cerebellum plays a key role in slower walking adaptations in interlimb coordination during split-belt treadmill walking, but ...
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Gait adaptation is essential for humans to walk according to the different demands of the environment. Although locomotor adaptation has been studied in different contexts and in various patient populations, the mechanisms behind locomotor adaptation are still not fully understood. The aim of the present study was to test two opposing hypotheses about the control of split-belt walking, one base...
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