Influence of prolonged bed-rest on spectral and temporal electromyographic motor control characteristics of the superficial lumbo-pelvic musculature


Autoria(s): Belavý, Daniel L.; Ng, Joseph K. F.; Wilson, Stephen J.; Armbrecht, Gabriele; Stegeman, Dick F.; Rittweger, Jorn; Felsenberg, Dieter; Richardson, Carolyn A.
Data(s)

01/02/2010

Resumo

Little is known about the motor control of the lumbo-pelvic musculature in microgravity and its simulation (bed-rest). Analysis of spectral and temporal electromyographic variables can provide information on motor control relevant for normal function. This study examined the effect of 56-days of bed-rest with 1-year follow-up in 10 male subjects on the median frequency and the activation timing in surface electromyographic recordings from five superficial lumbo-pelvic muscles during a repetitive knee movement task. Trunk fat mass (from whole body-composition measurements) and movement accuracy as possible explanatory factors were included. Increased median frequency was observed in the lumbar erector spinae starting late in bed-rest, but this was not seen in its synergist, the thoracic erector spinae (p<.0001). These changes persisted up to 1-year after bed-rest and were independent of changes in body-composition or movement accuracy. Analysis suggested decreases of median frequency (p<.0001) in the abdominal and gluteal muscles to result from increased (p<.01) trunk fat levels during and after bed-rest. No changes in lumbo-pelvic muscle activation timing were seen. The results suggest that bed-rest particularly affects the shorter lumbar erector spinae and that the temporal sequencing of superficial lumbo-pelvic muscle activation is relatively robust.

Identificador

http://hdl.handle.net/10536/DRO/DU:30071040

Idioma(s)

eng

Publicador

Elsevier

Relação

http://dro.deakin.edu.au/eserv/DU:30071040/belavy-influenceof-2010.pdf

http://www.dx.doi.org/10.1016/j.jelekin.2009.03.006

Direitos

2010, Elsevier

Palavras-Chave #Science & Technology #Life Sciences & Biomedicine #Neurosciences #Physiology #Rehabilitation #Sport Sciences #Neurosciences & Neurology #REHABILITATION, SCI #Spaceflight #Spine #Berlin bed-rest study #Median frequency #Motor control #NEUROMUSCULAR ACTIVATION PATTERNS #RESISTIVE VIBRATION EXERCISE #ISOMETRIC AXIAL ROTATION #MUSCLE-ACTIVITY #LUMBAR SPINE #SURFACE-EMG #SKILL ACQUISITION #TREADMILL WALKING #POSTURAL CONTROL #TRUNK MUSCLES
Tipo

Journal Article