Effects of galvanic vestibular stimulation on postural righting reactions in hemiplegia.

Centre of pressure Galvanic vestibular stimulation Postural righting reaction Stroke Stroke-induced hemiplegia Truncal balance

Journal

Neuroscience letters
ISSN: 1872-7972
Titre abrégé: Neurosci Lett
Pays: Ireland
ID NLM: 7600130

Informations de publication

Date de publication:
19 Mar 2024
Historique:
received: 06 11 2023
revised: 29 02 2024
accepted: 17 03 2024
medline: 22 3 2024
pubmed: 22 3 2024
entrez: 21 3 2024
Statut: aheadofprint

Résumé

Patients with post-stroke hemiplegia often exhibit reduced ability to maintain sitting balance, a crucial factor for predicting prognosis. Galvanic vestibular stimulation (GVS) influences postural control by stimulating vestibular organ. Although several studies have focused on GVS in static postures, no studies have demonstrated the influence of GVS on righting reactions. Therefore, we aimed to investigate the effects of GVS on postural righting reactions in seated patients with stroke-induced hemiplegia. Using a vertical board (VB), righting reactions were induced by tilting the VB at 10° after patients sat for 1 min. Patients adjusted their bodies until feeling vertical upon prompt. Twenty-two left hemiplegic patients with cerebrovascular disease participated, divided into two groups undergoing right cathode GVS (RC-GVS) followed by left cathode GVS or vice versa, preceded by sham stimulation. Centre of pressure and the joint angle were measured. During the postural righting reactions towards the paralysed side, RC-GVS enhanced the righting reactions and moved the mean position on the x-axis (COPx) to the right and the mean position on the y-axis (COPy) to the front. During the postural righting reaction towards the right side, RC-GVS induced resistance against the righting reaction, COPx was deflected to the right, COPy was deflected backward, and the angle of the neck tilt increased. The findings revealed that GVS with anodal stimulation on the paralysed side could promote righting reactions in patients with post-stroke hemiplegia. SIGNIFICANCE STATEMENT: The study findings suggest that using the contralesional placement of the anode promotes righting reactions, and galvanic vestibular stimulation can induce joint movements in the neck and trunk by polarising it to act as resistance against righting reactions.

Identifiants

pubmed: 38513935
pii: S0304-3940(24)00112-5
doi: 10.1016/j.neulet.2024.137735
pii:
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

137735

Informations de copyright

Copyright © 2024. Published by Elsevier B.V.

Déclaration de conflit d'intérêts

Declaration of Competing Interest The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.

Auteurs

Akari Horikawa (A)

Department of Rehabilitation, Kitahara Rehabilitation Hospital, 461 Sanyumachi, Hachioji-shi, Tokyo, 192-0012, Japan; Department of Physical Therapy, Faculty of Human Health Science, Tokyo Metropolitan University, 7-2-10 Higashi-Ogu, Arakawa-ku, Tokyo, 116-8551, Japan. Electronic address: matsumoto-akari@ed.tmu.ac.jp.

Kazu Amimoto (K)

Department of Physical Therapy, Faculty of Human Health Science, Tokyo Metropolitan University, 7-2-10 Higashi-Ogu, Arakawa-ku, Tokyo, 116-8551, Japan. Electronic address: amimoto@tmu.ac.jp.

Shota Horikawa (S)

Department of Rehabilitation, Kitahara Rehabilitation Hospital, 461 Sanyumachi, Hachioji-shi, Tokyo, 192-0012, Japan.

Ken Hiramoto (K)

Department of Rehabilitation, Kitahara Rehabilitation Hospital, 461 Sanyumachi, Hachioji-shi, Tokyo, 192-0012, Japan. Electronic address: kentarou_hiramoto@kitaharahosp.com.

Masaki Nishio (M)

Department of Rehabilitation, Kitahara Rehabilitation Hospital, 461 Sanyumachi, Hachioji-shi, Tokyo, 192-0012, Japan. Electronic address: masaki_nishio@kitaharahosp.com.

Jun Yoshino (J)

Department of Rehabilitation, Kitahara Rehabilitation Hospital, 461 Sanyumachi, Hachioji-shi, Tokyo, 192-0012, Japan.

Yumi Ikeda (Y)

Department of Physical Therapy, Faculty of Human Health Science, Tokyo Metropolitan University, 7-2-10 Higashi-Ogu, Arakawa-ku, Tokyo, 116-8551, Japan. Electronic address: ikedayum@tmu.ac.jp.

Classifications MeSH