Walking Training Enhances Corticospinal Excitability in Progressive Multiple Sclerosis—A Pilot Study

Background: Inflammatory lesions and neurodegeneration lead to motor, cognitive, and sensory impairments in people with multiple sclerosis (MS). Accumulation of disability is at least partially due to diminished capacity for neuroplasticity within the central nervous system. Aerobic exercise is a po...

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Main Authors: Arthur R. Chaves, Augustine J. Devasahayam, Morten Riemenschneider, Ryan W. Pretty, Michelle Ploughman
Format: Article
Language:English
Published: Frontiers Media S.A. 2020-06-01
Series:Frontiers in Neurology
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fneur.2020.00422/full
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spelling doaj-48c09a98908543b8b9419e7c146c58e12020-11-25T03:53:23ZengFrontiers Media S.A.Frontiers in Neurology1664-22952020-06-011110.3389/fneur.2020.00422536403Walking Training Enhances Corticospinal Excitability in Progressive Multiple Sclerosis—A Pilot StudyArthur R. Chaves0Augustine J. Devasahayam1Morten Riemenschneider2Ryan W. Pretty3Michelle Ploughman4Recovery and Performance Laboratory, Faculty of Medicine, L. A. Miller Centre, Memorial University of Newfoundland, St. John's, NL, CanadaRecovery and Performance Laboratory, Faculty of Medicine, L. A. Miller Centre, Memorial University of Newfoundland, St. John's, NL, CanadaSection for Sports Science, Department of Public Health, Aarhus University, Aarhus, DenmarkRecovery and Performance Laboratory, Faculty of Medicine, L. A. Miller Centre, Memorial University of Newfoundland, St. John's, NL, CanadaRecovery and Performance Laboratory, Faculty of Medicine, L. A. Miller Centre, Memorial University of Newfoundland, St. John's, NL, CanadaBackground: Inflammatory lesions and neurodegeneration lead to motor, cognitive, and sensory impairments in people with multiple sclerosis (MS). Accumulation of disability is at least partially due to diminished capacity for neuroplasticity within the central nervous system. Aerobic exercise is a potentially important intervention to enhance neuroplasticity since it causes upregulation of neurotrophins and enhances corticospinal excitability, which can be probed using single-pulse transcranial magnetic stimulation (TMS). Whether people with progressive MS who have accumulated substantial disability could benefit from walking rehabilitative training to enhance neuroplasticity is not known.Objective: We aimed to determine whether 10 weeks of task-specific walking training would affect corticospinal excitability over time (pre, post, and 3-month follow-up) among people with progressive MS who required walking aids.Results: Eight people with progressive MS (seven female; 29–74 years old) with an Expanded Disability Status Scale of 6–6.5 underwent harness-supported treadmill walking training in a temperature controlled room at 16°C (10 weeks; three times/week; 40 min at 40–65% heart rate reserve). After training, there was significantly higher corticospinal excitability in both brain hemispheres, reductions in TMS active motor thresholds, and increases in motor-evoked potential amplitudes and slope of the recruitment curve (REC). Decreased intracortical inhibition (shorter cortical silent period) after training was noted in the hemisphere corresponding to the stronger hand only. These effects were not sustained at follow-up. There was a significant relationship between increases in corticospinal excitability (REC, area under the curve) in the hemisphere corresponding to the stronger hand and lessening of both intensity and impact of fatigue on activities of daily living (Fatigue Severity Scale and Modified Fatigue Impact Scale, respectively).Conclusion: Our pilot results support that vigorous treadmill training can potentially improve neuroplastic potential and mitigate symptoms of the disease even among people who have accumulated substantial disability due to MS.https://www.frontiersin.org/article/10.3389/fneur.2020.00422/fulltranscranial magnetic stimulationneuroplasticityrehabilitationexerciseprogressive multiple sclerosiscorticospinal excitability
collection DOAJ
language English
format Article
sources DOAJ
author Arthur R. Chaves
Augustine J. Devasahayam
Morten Riemenschneider
Ryan W. Pretty
Michelle Ploughman
spellingShingle Arthur R. Chaves
Augustine J. Devasahayam
Morten Riemenschneider
Ryan W. Pretty
Michelle Ploughman
Walking Training Enhances Corticospinal Excitability in Progressive Multiple Sclerosis—A Pilot Study
Frontiers in Neurology
transcranial magnetic stimulation
neuroplasticity
rehabilitation
exercise
progressive multiple sclerosis
corticospinal excitability
author_facet Arthur R. Chaves
Augustine J. Devasahayam
Morten Riemenschneider
Ryan W. Pretty
Michelle Ploughman
author_sort Arthur R. Chaves
title Walking Training Enhances Corticospinal Excitability in Progressive Multiple Sclerosis—A Pilot Study
title_short Walking Training Enhances Corticospinal Excitability in Progressive Multiple Sclerosis—A Pilot Study
title_full Walking Training Enhances Corticospinal Excitability in Progressive Multiple Sclerosis—A Pilot Study
title_fullStr Walking Training Enhances Corticospinal Excitability in Progressive Multiple Sclerosis—A Pilot Study
title_full_unstemmed Walking Training Enhances Corticospinal Excitability in Progressive Multiple Sclerosis—A Pilot Study
title_sort walking training enhances corticospinal excitability in progressive multiple sclerosis—a pilot study
publisher Frontiers Media S.A.
series Frontiers in Neurology
issn 1664-2295
publishDate 2020-06-01
description Background: Inflammatory lesions and neurodegeneration lead to motor, cognitive, and sensory impairments in people with multiple sclerosis (MS). Accumulation of disability is at least partially due to diminished capacity for neuroplasticity within the central nervous system. Aerobic exercise is a potentially important intervention to enhance neuroplasticity since it causes upregulation of neurotrophins and enhances corticospinal excitability, which can be probed using single-pulse transcranial magnetic stimulation (TMS). Whether people with progressive MS who have accumulated substantial disability could benefit from walking rehabilitative training to enhance neuroplasticity is not known.Objective: We aimed to determine whether 10 weeks of task-specific walking training would affect corticospinal excitability over time (pre, post, and 3-month follow-up) among people with progressive MS who required walking aids.Results: Eight people with progressive MS (seven female; 29–74 years old) with an Expanded Disability Status Scale of 6–6.5 underwent harness-supported treadmill walking training in a temperature controlled room at 16°C (10 weeks; three times/week; 40 min at 40–65% heart rate reserve). After training, there was significantly higher corticospinal excitability in both brain hemispheres, reductions in TMS active motor thresholds, and increases in motor-evoked potential amplitudes and slope of the recruitment curve (REC). Decreased intracortical inhibition (shorter cortical silent period) after training was noted in the hemisphere corresponding to the stronger hand only. These effects were not sustained at follow-up. There was a significant relationship between increases in corticospinal excitability (REC, area under the curve) in the hemisphere corresponding to the stronger hand and lessening of both intensity and impact of fatigue on activities of daily living (Fatigue Severity Scale and Modified Fatigue Impact Scale, respectively).Conclusion: Our pilot results support that vigorous treadmill training can potentially improve neuroplastic potential and mitigate symptoms of the disease even among people who have accumulated substantial disability due to MS.
topic transcranial magnetic stimulation
neuroplasticity
rehabilitation
exercise
progressive multiple sclerosis
corticospinal excitability
url https://www.frontiersin.org/article/10.3389/fneur.2020.00422/full
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