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Electromyographic patterns of the rat hindlimb in response to muscle stretch after spinal cord injury

STUDY DESIGN: Experimental Study OBJECTIVES: To characterize the specific hindlimb electromyographic (EMG) patterns in response to muscle stretch and to measure the applied forces during stretching in the rat model of moderate SCI. SETTING: Kentucky Spinal Cord Injury Research Center, Louisville, KY...

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Autores principales: Keller, Anastasia V., Rees, Kathlene M, Seibt, Erik J, Wood, B Danni, Wade, Abigail D, Morehouse, Johnny, Shum-Siu, Alice, Magnuson, David S. K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5984666/
https://www.ncbi.nlm.nih.gov/pubmed/29459656
http://dx.doi.org/10.1038/s41393-018-0069-z
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author Keller, Anastasia V.
Rees, Kathlene M
Seibt, Erik J
Wood, B Danni
Wade, Abigail D
Morehouse, Johnny
Shum-Siu, Alice
Magnuson, David S. K.
author_facet Keller, Anastasia V.
Rees, Kathlene M
Seibt, Erik J
Wood, B Danni
Wade, Abigail D
Morehouse, Johnny
Shum-Siu, Alice
Magnuson, David S. K.
author_sort Keller, Anastasia V.
collection PubMed
description STUDY DESIGN: Experimental Study OBJECTIVES: To characterize the specific hindlimb electromyographic (EMG) patterns in response to muscle stretch and to measure the applied forces during stretching in the rat model of moderate SCI. SETTING: Kentucky Spinal Cord Injury Research Center, Louisville, KY, USA METHODS: Female Sprague Dawley rats (n=4) were instrumented for telemetry-based EMG recording (right Rectus Femoris and Biceps Femoris) and received a moderate T10 spinal cord injury (SCI). The major hindlimb muscle groups were stretched using our clinically modeled protocol. The EMG responses were recorded biweekly for 8 weeks. The forces applied during stretching were measured using a custom-designed glove. Locomotor function was assessed using the BBB Open Field Locomotor Scale, 3D kinematics and gait analysis. RESULTS: Three main EMG patterns in response to stretch were identified: clonic-like, air-stepping and spasms. Torques applied during stretching ranged from 0.8–6 N*cm, and did not change significantly over the weeks of stretching. Two stretching sessions a week did not result in a significant disruption to locomotor function. CONCLUSIONS: Stretching evokes EMG patterns in rats similar to those reported in humans including clonus and spasms. The torques used during stretching are comparable, based on the ratio of torque to body weight, to the few previously published studies that measured the forces and/or torques applied by physical therapists when stretching patients. Future studies are warranted to fully explore the impact of muscle stretch on spinal cord function after injury. SPONSORSHIP: DoD, KSCHIRT, NIH
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spelling pubmed-59846662018-08-19 Electromyographic patterns of the rat hindlimb in response to muscle stretch after spinal cord injury Keller, Anastasia V. Rees, Kathlene M Seibt, Erik J Wood, B Danni Wade, Abigail D Morehouse, Johnny Shum-Siu, Alice Magnuson, David S. K. Spinal Cord Article STUDY DESIGN: Experimental Study OBJECTIVES: To characterize the specific hindlimb electromyographic (EMG) patterns in response to muscle stretch and to measure the applied forces during stretching in the rat model of moderate SCI. SETTING: Kentucky Spinal Cord Injury Research Center, Louisville, KY, USA METHODS: Female Sprague Dawley rats (n=4) were instrumented for telemetry-based EMG recording (right Rectus Femoris and Biceps Femoris) and received a moderate T10 spinal cord injury (SCI). The major hindlimb muscle groups were stretched using our clinically modeled protocol. The EMG responses were recorded biweekly for 8 weeks. The forces applied during stretching were measured using a custom-designed glove. Locomotor function was assessed using the BBB Open Field Locomotor Scale, 3D kinematics and gait analysis. RESULTS: Three main EMG patterns in response to stretch were identified: clonic-like, air-stepping and spasms. Torques applied during stretching ranged from 0.8–6 N*cm, and did not change significantly over the weeks of stretching. Two stretching sessions a week did not result in a significant disruption to locomotor function. CONCLUSIONS: Stretching evokes EMG patterns in rats similar to those reported in humans including clonus and spasms. The torques used during stretching are comparable, based on the ratio of torque to body weight, to the few previously published studies that measured the forces and/or torques applied by physical therapists when stretching patients. Future studies are warranted to fully explore the impact of muscle stretch on spinal cord function after injury. SPONSORSHIP: DoD, KSCHIRT, NIH 2018-02-19 2018-06 /pmc/articles/PMC5984666/ /pubmed/29459656 http://dx.doi.org/10.1038/s41393-018-0069-z Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Keller, Anastasia V.
Rees, Kathlene M
Seibt, Erik J
Wood, B Danni
Wade, Abigail D
Morehouse, Johnny
Shum-Siu, Alice
Magnuson, David S. K.
Electromyographic patterns of the rat hindlimb in response to muscle stretch after spinal cord injury
title Electromyographic patterns of the rat hindlimb in response to muscle stretch after spinal cord injury
title_full Electromyographic patterns of the rat hindlimb in response to muscle stretch after spinal cord injury
title_fullStr Electromyographic patterns of the rat hindlimb in response to muscle stretch after spinal cord injury
title_full_unstemmed Electromyographic patterns of the rat hindlimb in response to muscle stretch after spinal cord injury
title_short Electromyographic patterns of the rat hindlimb in response to muscle stretch after spinal cord injury
title_sort electromyographic patterns of the rat hindlimb in response to muscle stretch after spinal cord injury
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5984666/
https://www.ncbi.nlm.nih.gov/pubmed/29459656
http://dx.doi.org/10.1038/s41393-018-0069-z
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