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Effets de la vibration des muscles sur les mecanismes neuronaux et la fonction du membre superieur et inferieur des personnes ayant une hemiparesie chronique

Posted on:2011-04-09Degree:Ph.DType:Thesis
University:Universite de Montreal (Canada)Candidate:de Andrade Melo, SibeleFull Text:PDF
GTID:2444390002456600Subject:Occupational safety
Abstract/Summary:
This thesis aims to answer three basic questions: 1) Are the decrease in corticospinal excitability and the lack of intracortical inhibition observed following transcranial magnetic stimulation (TMS) of the affected hand motor cortex of stroke patients present after TMS of the affected leg motor cortex? 2) Are the alterations in corticomotor excitability correlated with motor impairments and disabilities of subjects who have suffered a stroke for over six months? 3) Can muscle vibration, as a source of strong sensory afference modulate corticomotor excitability and improve motor performance of these subjects?;In the other three articles included in this thesis, the excitability of corticospinal and intracortical circuits has been studied in 27 hemiparetic patients and in 20 healthy subjects without neurological disease or injury. Sensorimotor functions were also evaluated with valid and reliable clinical tests. Similar to that observed in the hand of hemiparetic patients, we found, compared to the healthy subjects, a decrease of corticospinal excitability and a lack of intracortical inhibition following TMS of the affected leg motor cortex (Article 2). The hemiparetic patients also showed a lack of focus of the motor output during voluntary activation of plantar flexors. This was characterized by an increase in the neural excitability not only of the agonist muscles, but also of the synergists and even the antagonist muscles.;The main goal of this thesis was to test the potential effects of vibrating hand (Article 3) and thigh (Article 4) muscles on the neural mechanisms that control these muscles. We found that vibration increases the amplitude of motor responses in the vibrated muscles and even produces a response in subjects with no motor response at rest or during a voluntary contraction. The vibration also decreased the intracortical inhibition recorded in the paretic quadriceps muscle (vibrated muscle). The decrease was however not significant at the hand. Finally, using a cross-over design study, the vibration of the paretic hand or leg resulted in specific improvements in hand dexterity or leg coordination, respectively. In the lower limb, quadriceps vibration also reduced the spasticity in patients. The results obtained in this thesis are very promising for stroke rehabilitation because with a single session of vibration, we obtained neurophysiological and clinical improvements.;Keywords : muscle vibration, stroke, hemiparesis, hand dexterity, incoordination, transcranial magnetic stimulation, rehabilitation.;First of all, to support our choice of intervention and to assess the potential of local mechanical vibration to promote the recovery of persons with neurological impairment, we conducted a thorough review of its physiological effects and clinical applications in the scientific literature (article 1). The wealth of information on the physiological effects of vibration contrasts with the lack of studies that have evaluated its therapeutic effects. Nevertheless, we found that, despite the paucity of studies, the results on its clinical use are encouraging and positive and no adverse effects were reported.
Keywords/Search Tags:Vibration, Muscles, Excitability, Effects, Lack, Intracortical, Motor, Thesis
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