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User-Centered Design and Development of the Modular TWIN Lower Limb Exoskeleton

For decades, powered exoskeletons have been considered for possible employment in rehabilitation and personal use. Yet, these devices are still far from addressing the needs of users. Here, we introduce TWIN, a novel modular lower limb exoskeleton for personal use of spinal-cord injury (SCI) subject...

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Autores principales: Laffranchi, Matteo, D'Angella, Stefano, Vassallo, Christian, Piezzo, Chiara, Canepa, Michele, De Giuseppe, Samuele, Di Salvo, Mirco, Succi, Antonio, Cappa, Samuele, Cerruti, Giulio, Scarpetta, Silvia, Cavallaro, Lorenzo, Boccardo, Nicolò, D'Angelo, Marialaura, Marchese, Claudia, Saglia, Jody A., Guanziroli, Eleonora, Barresi, Giacinto, Semprini, Marianna, Traverso, Simone, Maludrottu, Stefano, Molteni, Franco, Sacchetti, Rinaldo, Gruppioni, Emanuele, De Michieli, Lorenzo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8529015/
https://www.ncbi.nlm.nih.gov/pubmed/34690732
http://dx.doi.org/10.3389/fnbot.2021.709731
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author Laffranchi, Matteo
D'Angella, Stefano
Vassallo, Christian
Piezzo, Chiara
Canepa, Michele
De Giuseppe, Samuele
Di Salvo, Mirco
Succi, Antonio
Cappa, Samuele
Cerruti, Giulio
Scarpetta, Silvia
Cavallaro, Lorenzo
Boccardo, Nicolò
D'Angelo, Marialaura
Marchese, Claudia
Saglia, Jody A.
Guanziroli, Eleonora
Barresi, Giacinto
Semprini, Marianna
Traverso, Simone
Maludrottu, Stefano
Molteni, Franco
Sacchetti, Rinaldo
Gruppioni, Emanuele
De Michieli, Lorenzo
author_facet Laffranchi, Matteo
D'Angella, Stefano
Vassallo, Christian
Piezzo, Chiara
Canepa, Michele
De Giuseppe, Samuele
Di Salvo, Mirco
Succi, Antonio
Cappa, Samuele
Cerruti, Giulio
Scarpetta, Silvia
Cavallaro, Lorenzo
Boccardo, Nicolò
D'Angelo, Marialaura
Marchese, Claudia
Saglia, Jody A.
Guanziroli, Eleonora
Barresi, Giacinto
Semprini, Marianna
Traverso, Simone
Maludrottu, Stefano
Molteni, Franco
Sacchetti, Rinaldo
Gruppioni, Emanuele
De Michieli, Lorenzo
author_sort Laffranchi, Matteo
collection PubMed
description For decades, powered exoskeletons have been considered for possible employment in rehabilitation and personal use. Yet, these devices are still far from addressing the needs of users. Here, we introduce TWIN, a novel modular lower limb exoskeleton for personal use of spinal-cord injury (SCI) subjects. This system was designed according to a set of user requirements (lightweight and autonomous portability, quick and autonomous donning and setup, stability when standing/walking, cost effectiveness, long battery life, comfort, safety) which emerged during participatory investigations that organically involved patients, engineers, designers, physiatrists, and physical therapists from two major rehabilitation centers in Italy. As a result of this user-centered process, TWIN's design is based on a variety of small mechatronic modules which are meant to be easily assembled and donned on or off by the user in full autonomy. This paper presents the development of TWIN, an exoskeleton for personal use of SCI users, and the application of user-centered design methods that are typically adopted in medical device industry, for its development. We can state that this approach revealed to be extremely effective and insightful to direct and continuously adapt design goals and activities toward the addressment of user needs, which led to the development of an exoskeleton with modular mechatronics and novel lateral quick release systems. Additionally, this work includes the preliminary assessment of this exoskeleton, which involved healthy volunteers and a complete SCI patient. Tests validated the mechatronics of TWIN and emphasized its high potential in terms of system usability for its intended use. These tests followed procedures defined in existing standards in usability engineering and were part of the formative evaluation of TWIN as a premise to the summative evaluation of its usability as medical device.
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spelling pubmed-85290152021-10-22 User-Centered Design and Development of the Modular TWIN Lower Limb Exoskeleton Laffranchi, Matteo D'Angella, Stefano Vassallo, Christian Piezzo, Chiara Canepa, Michele De Giuseppe, Samuele Di Salvo, Mirco Succi, Antonio Cappa, Samuele Cerruti, Giulio Scarpetta, Silvia Cavallaro, Lorenzo Boccardo, Nicolò D'Angelo, Marialaura Marchese, Claudia Saglia, Jody A. Guanziroli, Eleonora Barresi, Giacinto Semprini, Marianna Traverso, Simone Maludrottu, Stefano Molteni, Franco Sacchetti, Rinaldo Gruppioni, Emanuele De Michieli, Lorenzo Front Neurorobot Neuroscience For decades, powered exoskeletons have been considered for possible employment in rehabilitation and personal use. Yet, these devices are still far from addressing the needs of users. Here, we introduce TWIN, a novel modular lower limb exoskeleton for personal use of spinal-cord injury (SCI) subjects. This system was designed according to a set of user requirements (lightweight and autonomous portability, quick and autonomous donning and setup, stability when standing/walking, cost effectiveness, long battery life, comfort, safety) which emerged during participatory investigations that organically involved patients, engineers, designers, physiatrists, and physical therapists from two major rehabilitation centers in Italy. As a result of this user-centered process, TWIN's design is based on a variety of small mechatronic modules which are meant to be easily assembled and donned on or off by the user in full autonomy. This paper presents the development of TWIN, an exoskeleton for personal use of SCI users, and the application of user-centered design methods that are typically adopted in medical device industry, for its development. We can state that this approach revealed to be extremely effective and insightful to direct and continuously adapt design goals and activities toward the addressment of user needs, which led to the development of an exoskeleton with modular mechatronics and novel lateral quick release systems. Additionally, this work includes the preliminary assessment of this exoskeleton, which involved healthy volunteers and a complete SCI patient. Tests validated the mechatronics of TWIN and emphasized its high potential in terms of system usability for its intended use. These tests followed procedures defined in existing standards in usability engineering and were part of the formative evaluation of TWIN as a premise to the summative evaluation of its usability as medical device. Frontiers Media S.A. 2021-10-07 /pmc/articles/PMC8529015/ /pubmed/34690732 http://dx.doi.org/10.3389/fnbot.2021.709731 Text en Copyright © 2021 Laffranchi, D'Angella, Vassallo, Piezzo, Canepa, De Giuseppe, Di Salvo, Succi, Cappa, Cerruti, Scarpetta, Cavallaro, Boccardo, D'Angelo, Marchese, Saglia, Guanziroli, Barresi, Semprini, Traverso, Maludrottu, Molteni, Sacchetti, Gruppioni and De Michieli. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Laffranchi, Matteo
D'Angella, Stefano
Vassallo, Christian
Piezzo, Chiara
Canepa, Michele
De Giuseppe, Samuele
Di Salvo, Mirco
Succi, Antonio
Cappa, Samuele
Cerruti, Giulio
Scarpetta, Silvia
Cavallaro, Lorenzo
Boccardo, Nicolò
D'Angelo, Marialaura
Marchese, Claudia
Saglia, Jody A.
Guanziroli, Eleonora
Barresi, Giacinto
Semprini, Marianna
Traverso, Simone
Maludrottu, Stefano
Molteni, Franco
Sacchetti, Rinaldo
Gruppioni, Emanuele
De Michieli, Lorenzo
User-Centered Design and Development of the Modular TWIN Lower Limb Exoskeleton
title User-Centered Design and Development of the Modular TWIN Lower Limb Exoskeleton
title_full User-Centered Design and Development of the Modular TWIN Lower Limb Exoskeleton
title_fullStr User-Centered Design and Development of the Modular TWIN Lower Limb Exoskeleton
title_full_unstemmed User-Centered Design and Development of the Modular TWIN Lower Limb Exoskeleton
title_short User-Centered Design and Development of the Modular TWIN Lower Limb Exoskeleton
title_sort user-centered design and development of the modular twin lower limb exoskeleton
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8529015/
https://www.ncbi.nlm.nih.gov/pubmed/34690732
http://dx.doi.org/10.3389/fnbot.2021.709731
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