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Multiple sclerosis-related fatigue: the role of impaired corticospinal responses and heightened exercise fatigability.
Coates, Kyla D; Aboodarda, Saied Jalal; Krüger, Renata L; Martin, Tristan; Metz, Luanne M; Jarvis, Scott E; Millet, Guillaume Y.
Affiliation
  • Coates KD; Neuromuscular Fatigue Laboratory, Faculty of Kinesiology, University of Calgary, Calgary, Alberta, Canada.
  • Aboodarda SJ; Neuromuscular Fatigue Laboratory, Faculty of Kinesiology, University of Calgary, Calgary, Alberta, Canada.
  • Krüger RL; Neuromuscular Fatigue Laboratory, Faculty of Kinesiology, University of Calgary, Calgary, Alberta, Canada.
  • Martin T; Neuromuscular Fatigue Laboratory, Faculty of Kinesiology, University of Calgary, Calgary, Alberta, Canada.
  • Metz LM; Unité Mixte de Recherche-S 1075 Comete Moblites: Vieillissement Pathologies Santé, Institut National de la Santé et de la Recherche Médicale, Normandy University, Caen, France.
  • Jarvis SE; Hotchkiss Brain Institute and the Department of Clinical Neurosciences, Cumming School of Medicine, University of Calgary, Calgary, Alberta, Canada.
  • Millet GY; Hotchkiss Brain Institute and the Department of Clinical Neurosciences, Cumming School of Medicine, University of Calgary, Calgary, Alberta, Canada.
J Neurophysiol ; 124(4): 1131-1143, 2020 10 01.
Article in En | MEDLINE | ID: mdl-32877296
ABSTRACT
It is unclear whether motor fatigability and perceived fatigue share a common pathophysiology in people with multiple sclerosis (PwMS). This cross-sectional investigation explored the relationship between the mechanisms of motor fatigability from cycling and fatigue severity in PwMS. Thirteen highly fatigued (HF) and thirteen nonfatigued (LF) PwMS and thirteen healthy controls (CON) completed a step test until volitional exhaustion on an innovative cycle ergometer. Neuromuscular evaluations involving femoral nerve electrical stimulation and transcranial magnetic stimulation were performed every 3 min throughout cycling. One-way ANOVA at baseline and exhaustion uncovered evidence of consistently smaller motor evoked potential (MEP) amplitudes (P = 0.011) and prolonged MEP latencies (P = 0.041) in HF as well as a greater decline in maximal voluntary contraction force (HF 63 ± 13%; LF 75 ± 13%; CON 73 ± 11% of pre; P = 0.037) and potentiated twitch force (HF 35 ± 13%; LF 50 ± 16%; CON 47 ± 17% of pre; P = 0.049) in HF at volitional exhaustion. Hierarchical regression determined that fatigue severity on the Fatigue Severity Scale was predicted by prolonged MEP latencies (change in r2 = 0.389), elevated peripheral muscle fatigability (change in r2 = 0.183), and depressive symptoms (change in r2 = 0.213). These findings indicate that MS-related fatigue is distinguished by disrupted corticospinal responsiveness, which could suggest progressive pathology, but fatigability from whole body exercise and depressive symptoms also influence perceptions of fatigue in PwMS.NEW & NOTEWORTHY The etiology of fatigability from whole body exercise was examined for the first time to accurately elucidate the relationship between fatigue and fatigability in multiple sclerosis (MS). Compromised corticospinal responsiveness predicted fatigue severity, providing a novel, objective indicator of fatigue in MS. Although the impaired corticomotor transmission did not aggravate muscle activation in this group of people with multiple sclerosis (PwMS) of lower disability, heightened muscle fatigability was seen to contribute to perceptions of fatigue in PwMS.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Pyramidal Tracts / Exercise / Muscle Fatigue / Multiple Sclerosis Type of study: Prognostic_studies Limits: Adult / Female / Humans / Male / Middle aged Language: En Journal: J Neurophysiol Year: 2020 Type: Article Affiliation country: Canada

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Pyramidal Tracts / Exercise / Muscle Fatigue / Multiple Sclerosis Type of study: Prognostic_studies Limits: Adult / Female / Humans / Male / Middle aged Language: En Journal: J Neurophysiol Year: 2020 Type: Article Affiliation country: Canada