Patients’ physiological reactions to competitive rehabilitation therapies assisted by robotic devices
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Published:2023-04-11
Issue:1
Volume:20
Page:
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ISSN:1743-0003
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Container-title:Journal of NeuroEngineering and Rehabilitation
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language:en
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Short-container-title:J NeuroEngineering Rehabil
Author:
Catalán José M.,Blanco-Ivorra Andrea,García-Pérez José V.,Vales Yolanda,Martínez-Pascual David,Ezquerro Santiago,Garrote Alicia,Costa Teresa,Lledó Luis D.,García-Aracil Nicolás
Abstract
Abstract
Background
The aging of the population and the progressive increase in life expectancy in developed countries is leading to a high incidence of cerebrovascular diseases. Several studies have demonstrated that robot-assisted rehabilitation therapies combined with serious games can improve rehabilitation outcomes. Social interaction in the form of multiplayer games has been highlighted as a potential element to increase patient’s motivation and exercise intensity, which professionals have described as one of the determining factors in maximizing rehabilitation outcomes. Despite this, it has not been widely studied. Physiological measures have been proven as an objective tool to evaluate patients’ experience in robot-assisted rehabilitation environments. However, they have not been used to evaluate patients’ experience in multiplayer robot-assisted rehabilitation therapies. The main objective of this study is to analyze whether the interpersonal interaction inherent in a competitive game mode affects the patients’ physiological responses in robot-assisted rehabilitation environments.
Methods
A total of 14 patients participated in this study. The results of a competitive game mode were compared with a single-player game mode with different difficulty levels. Exercise intensity and performance were measured through parameters extracted from the game and the information provided by the robotic rehabilitation platforms. The physiological response of patients in each game mode was measured by the heart rate (HR) and the galvanic skin response (GSR). Patients were asked to fill out the IMI and the overall experience questionnaire.
Results
The exercise intensity results show that high-difficulty single-player game mode is similar in terms of intensity level to a competitive game mode, based on velocity values, reaction time and questionnaire results. However, the results of the physiological responses of the patients measured by GSR and HR are lower in the case of the competitive mode compared to the high-difficulty single-player game mode, obtaining results similar to those obtained in the low-difficulty single-player game mode.
Conclusions
Patients find the competitive game mode the most fun, which is also the mode they report experiencing the most effort and stress level. However, this subjective evaluation is not in line with the results of physiological responses. This study concludes that interpersonal interaction inherent to a competitive game mode influences patients’ physiological responses. This could mean that social interaction is an important factor to consider when interpreting the results obtained from physiological measurements.
Funder
Ministry of Universities and European Union Research Grants of the Miguel Hernández University of Elche Youth Guarantee Plan Spanish Ministry of Universities Spanish Ministry of Science and Innovation
Publisher
Springer Science and Business Media LLC
Subject
Health Informatics,Rehabilitation
Reference55 articles.
1. United Nations Department of Economic and Social Affairs, Population Division: World population prospects 2022: summary of results. DESA/POP/2022/TR/NO. 3. 2022. ISBN: 978-92-1-148373-4 2. Norrving B, Barrick J, Davalos A, Dichgans M, Cordonnier C, Guekht A, Kutluk K, Mikulik R, Wardlaw J, Richard E, Nabavi D, Molina C, Bath PM, Sunnerhagen KS, Rudd A, Drummond A, Planas A, Caso V. Action plan for stroke in Europe 2018–2030. Eur Stroke J. 2018;3(4):309–36. https://doi.org/10.1177/2396987318808719. 3. Roby-Brami A, Jarrassé N, Parry R. Impairment and compensation in dexterous upper-limb function after stroke from the direct consequences of pyramidal tract lesions to behavioral involvement of both upper-limbs in daily activities. Front Hum Neurosci. 2021. https://doi.org/10.3389/fnhum.2021.662006. 4. Winstein CJ, Stein J, Arena R, Bates B, Cherney LR, Cramer SC, Deruyter F, Eng JJ, Fisher B, Harvey RL, Lang CE, MacKay-Lyons M, Ottenbacher KJ, Pugh S, Reeves MJ, Richards LG, Stiers W, Zorowitz RD. Guidelines for adult stroke rehabilitation and recovery. Stroke. 2016;47(6):98–169. https://doi.org/10.1161/STR.0000000000000098. 5. ...Hebert D, Lindsay MP, McIntyre A, Kirton A, Rumney PG, Bagg S, Bayley M, Dowlatshahi D, Dukelow S, Garnhum M, Glasser E, Halabi M-L, Kang E, MacKay-Lyons M, Martino R, Rochette A, Rowe S, Salbach N, Semenko B, Stack B, Swinton L, Weber V, Mayer M, Verrilli S, DeVeber G, Andersen J, Barlow K, Cassidy C, Dilenge M-E, Fehlings D, Hung R, Iruthayarajah J, Lenz L, Majnemer A, Purtzki J, Rafay M, Sonnenberg LK, Townley A, Janzen S, Foley N, Teasell R. Canadian stroke best practice recommendations: stroke rehabilitation practice guidelines, update 2015. Int J Stroke. 2016;11(4):459–84. https://doi.org/10.1177/1747493016643553. (PMID: 27079654).
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