Corticospinal and Clinical Effects of Muscle Tendon Vibration in Neurologically Impaired Individuals. A Scoping Review

This review verified the extent, variety, quality and main findings of studies that have tested the neurophysiological and clinical effects of muscle tendon vibration (VIB) in individuals with sensorimotor impairments. The search was conducted on PubMed, CINAHL, and SportDiscuss up to April 2024. St...

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Veröffentlicht in:Journal of motor behavior Jg. 57; H. 2; S. 198 - 214
Hauptverfasser: Lauzier, Lydiane, Munger, Laurence, Perron, Marie-Pier, Bertrand-Charette, Michaël, Sollmann, Nico, Schneider, Cyril, Bonfert, Michaela V., Beaulieu, Louis-David
Format: Journal Article
Sprache:Englisch
Veröffentlicht: United States Routledge 04.03.2025
Taylor & Francis Inc
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ISSN:0022-2895, 1940-1027, 1940-1027
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Abstract This review verified the extent, variety, quality and main findings of studies that have tested the neurophysiological and clinical effects of muscle tendon vibration (VIB) in individuals with sensorimotor impairments. The search was conducted on PubMed, CINAHL, and SportDiscuss up to April 2024. Studies were selected if they included humans with neurological impairments, applied VIB and used at least one measure of corticospinal excitability using transcranial magnetic stimulation (TMS). Two investigators assessed the studies' quality using critical appraisal checklists and extracted relevant data. The 10 articles included were diverse in populations and methods, generally rated as 'average' to 'good' quality. All studies reported an increased corticospinal excitability in the vibrated muscle, but the effects of VIB on non-vibrated muscles remain unclear. Positive clinical changes in response to VIB were reported in a few studies, such as a decreased spasticity and improved sensorimotor function. These changes were sometimes correlated with corticospinal effects, suggesting a link between VIB-induced plasticity and clinical improvements. Despite the limited and heterogeneous literature, this review supports the facilitatory influence of VIB on motor outputs controlling vibrated muscles, even with altered sensorimotor functions. It highlights knowledge gaps and suggests future research directions on VIB mechanisms and clinical implications.
AbstractList This review verified the extent, variety, quality and main findings of studies that have tested the neurophysiological and clinical effects of muscle tendon vibration (VIB) in individuals with sensorimotor impairments. The search was conducted on PubMed, CINAHL, and SportDiscuss up to April 2024. Studies were selected if they included humans with neurological impairments, applied VIB and used at least one measure of corticospinal excitability using transcranial magnetic stimulation (TMS). Two investigators assessed the studies' quality using critical appraisal checklists and extracted relevant data. The 10 articles included were diverse in populations and methods, generally rated as 'average' to 'good' quality. All studies reported an increased corticospinal excitability in the vibrated muscle, but the effects of VIB on non-vibrated muscles remain unclear. Positive clinical changes in response to VIB were reported in a few studies, such as a decreased spasticity and improved sensorimotor function. These changes were sometimes correlated with corticospinal effects, suggesting a link between VIB-induced plasticity and clinical improvements. Despite the limited and heterogeneous literature, this review supports the facilitatory influence of VIB on motor outputs controlling vibrated muscles, even with altered sensorimotor functions. It highlights knowledge gaps and suggests future research directions on VIB mechanisms and clinical implications.
This review verified the extent, variety, quality and main findings of studies that have tested the neurophysiological and clinical effects of muscle tendon vibration (VIB) in individuals with sensorimotor impairments. The search was conducted on PubMed, CINAHL, and SportDiscuss up to April 2024. Studies were selected if they included humans with neurological impairments, applied VIB and used at least one measure of corticospinal excitability using transcranial magnetic stimulation (TMS). Two investigators assessed the studies' quality using critical appraisal checklists and extracted relevant data. The 10 articles included were diverse in populations and methods, generally rated as 'average' to 'good' quality. All studies reported an increased corticospinal excitability in the vibrated muscle, but the effects of VIB on non-vibrated muscles remain unclear. Positive clinical changes in response to VIB were reported in a few studies, such as a decreased spasticity and improved sensorimotor function. These changes were sometimes correlated with corticospinal effects, suggesting a link between VIB-induced plasticity and clinical improvements. Despite the limited and heterogeneous literature, this review supports the facilitatory influence of VIB on motor outputs controlling vibrated muscles, even with altered sensorimotor functions. It highlights knowledge gaps and suggests future research directions on VIB mechanisms and clinical implications.This review verified the extent, variety, quality and main findings of studies that have tested the neurophysiological and clinical effects of muscle tendon vibration (VIB) in individuals with sensorimotor impairments. The search was conducted on PubMed, CINAHL, and SportDiscuss up to April 2024. Studies were selected if they included humans with neurological impairments, applied VIB and used at least one measure of corticospinal excitability using transcranial magnetic stimulation (TMS). Two investigators assessed the studies' quality using critical appraisal checklists and extracted relevant data. The 10 articles included were diverse in populations and methods, generally rated as 'average' to 'good' quality. All studies reported an increased corticospinal excitability in the vibrated muscle, but the effects of VIB on non-vibrated muscles remain unclear. Positive clinical changes in response to VIB were reported in a few studies, such as a decreased spasticity and improved sensorimotor function. These changes were sometimes correlated with corticospinal effects, suggesting a link between VIB-induced plasticity and clinical improvements. Despite the limited and heterogeneous literature, this review supports the facilitatory influence of VIB on motor outputs controlling vibrated muscles, even with altered sensorimotor functions. It highlights knowledge gaps and suggests future research directions on VIB mechanisms and clinical implications.
Author Beaulieu, Louis-David
Munger, Laurence
Bertrand-Charette, Michaël
Bonfert, Michaela V.
Lauzier, Lydiane
Perron, Marie-Pier
Sollmann, Nico
Schneider, Cyril
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  surname: Lauzier
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  givenname: Laurence
  surname: Munger
  fullname: Munger, Laurence
  organization: Laboratoire de recherche Biomécanique & Neurophysiologique en Réadaptation neuro-musculo-squelettique, Centre intersectoriel en santé durable, Université du Québec à Chicoutimi
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  givenname: Marie-Pier
  surname: Perron
  fullname: Perron, Marie-Pier
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  givenname: Michaël
  surname: Bertrand-Charette
  fullname: Bertrand-Charette, Michaël
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  givenname: Nico
  surname: Sollmann
  fullname: Sollmann, Nico
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  givenname: Cyril
  surname: Schneider
  fullname: Schneider, Cyril
  organization: School of Rehabilitation Science, Faculty of Medicine, Université Laval
– sequence: 7
  givenname: Michaela V.
  surname: Bonfert
  fullname: Bonfert, Michaela V.
  organization: LMU Center for Children with Medical Complexity-iSPZ Hauner, Ludwig-Maximilians-Universität München
– sequence: 8
  givenname: Louis-David
  surname: Beaulieu
  fullname: Beaulieu, Louis-David
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Keywords Scoping review
transcranial magnetic stimulation
sensorimotor impairment
muscle tendon vibration
neurological disorder
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Snippet This review verified the extent, variety, quality and main findings of studies that have tested the neurophysiological and clinical effects of muscle tendon...
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SubjectTerms Humans
muscle tendon vibration
Muscle, Skeletal - physiology
Muscle, Skeletal - physiopathology
Nervous System Diseases - physiopathology
neurological disorder
Neurological Impairments
Pyramidal Tracts - physiology
Pyramidal Tracts - physiopathology
Scoping review
sensorimotor impairment
Tendons - physiology
Tendons - physiopathology
Transcranial Magnetic Stimulation
Vibration - therapeutic use
Title Corticospinal and Clinical Effects of Muscle Tendon Vibration in Neurologically Impaired Individuals. A Scoping Review
URI https://www.tandfonline.com/doi/abs/10.1080/00222895.2024.2441860
https://www.ncbi.nlm.nih.gov/pubmed/39709638
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https://www.proquest.com/docview/3148494858
Volume 57
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