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Neurorehabilitation Through Synergistic Man-Machine Interfaces Promoting Dormant Neuroplasticity in Spinal Cord Injury: Protocol for a Nonrandomized Controlled Trial

BACKGROUND: Spinal cord injury (SCI) constitutes a major sociomedical problem, impacting approximately 0.32-0.64 million people each year worldwide; particularly, it impacts young individuals, causing long-term, often irreversible disability. While effective rehabilitation of patients with SCI remai...

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Autores principales: Athanasiou, Alkinoos, Mitsopoulos, Konstantinos, Praftsiotis, Apostolos, Astaras, Alexander, Antoniou, Panagiotis, Pandria, Niki, Petronikolou, Vasileia, Kasimis, Konstantinos, Lyssas, George, Terzopoulos, Nikos, Fiska, Vasilki, Kartsidis, Panagiotis, Savvidis, Theodoros, Arvanitidis, Athanasios, Chasapis, Konstantinos, Moraitopoulos, Alexandros, Nizamis, Kostas, Kalfas, Anestis, Iakovidis, Paris, Apostolou, Thomas, Magras, Ioannis, Bamidis, Panagiotis
Formato: Online Artículo Texto
Lenguaje:English
Publicado: JMIR Publications 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9516361/
https://www.ncbi.nlm.nih.gov/pubmed/36099009
http://dx.doi.org/10.2196/41152
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author Athanasiou, Alkinoos
Mitsopoulos, Konstantinos
Praftsiotis, Apostolos
Astaras, Alexander
Antoniou, Panagiotis
Pandria, Niki
Petronikolou, Vasileia
Kasimis, Konstantinos
Lyssas, George
Terzopoulos, Nikos
Fiska, Vasilki
Kartsidis, Panagiotis
Savvidis, Theodoros
Arvanitidis, Athanasios
Chasapis, Konstantinos
Moraitopoulos, Alexandros
Nizamis, Kostas
Kalfas, Anestis
Iakovidis, Paris
Apostolou, Thomas
Magras, Ioannis
Bamidis, Panagiotis
author_facet Athanasiou, Alkinoos
Mitsopoulos, Konstantinos
Praftsiotis, Apostolos
Astaras, Alexander
Antoniou, Panagiotis
Pandria, Niki
Petronikolou, Vasileia
Kasimis, Konstantinos
Lyssas, George
Terzopoulos, Nikos
Fiska, Vasilki
Kartsidis, Panagiotis
Savvidis, Theodoros
Arvanitidis, Athanasios
Chasapis, Konstantinos
Moraitopoulos, Alexandros
Nizamis, Kostas
Kalfas, Anestis
Iakovidis, Paris
Apostolou, Thomas
Magras, Ioannis
Bamidis, Panagiotis
author_sort Athanasiou, Alkinoos
collection PubMed
description BACKGROUND: Spinal cord injury (SCI) constitutes a major sociomedical problem, impacting approximately 0.32-0.64 million people each year worldwide; particularly, it impacts young individuals, causing long-term, often irreversible disability. While effective rehabilitation of patients with SCI remains a significant challenge, novel neural engineering technologies have emerged to target and promote dormant neuroplasticity in the central nervous system. OBJECTIVE: This study aims to develop, pilot test, and optimize a platform based on multiple immersive man-machine interfaces offering rich feedback, including (1) visual motor imagery training under high-density electroencephalographic recording, (2) mountable robotic arms controlled with a wireless brain-computer interface (BCI), (3) a body-machine interface (BMI) consisting of wearable robotics jacket and gloves in combination with a serious game (SG) application, and (4) an augmented reality module. The platform will be used to validate a self-paced neurorehabilitation intervention and to study cortical activity in chronic complete and incomplete SCI at the cervical spine. METHODS: A 3-phase pilot study (clinical trial) was designed to evaluate the NeuroSuitUp platform, including patients with chronic cervical SCI with complete and incomplete injury aged over 14 years and age-/sex-matched healthy participants. Outcome measures include BCI control and performance in the BMI-SG module, as well as improvement of functional independence, while also monitoring neuropsychological parameters such as kinesthetic imagery, motivation, self-esteem, depression and anxiety, mental effort, discomfort, and perception of robotics. Participant enrollment into the main clinical trial is estimated to begin in January 2023 and end by December 2023. RESULTS: A preliminary analysis of collected data during pilot testing of BMI-SG by healthy participants showed that the platform was easy to use, caused no discomfort, and the robotics were perceived positively by the participants. Analysis of results from the main clinical trial will begin as recruitment progresses and findings from the complete analysis of results are expected in early 2024. CONCLUSIONS: Chronic SCI is characterized by irreversible disability impacting functional independence. NeuroSuitUp could provide a valuable complementary platform for training in immersive rehabilitation methods to promote dormant neural plasticity. TRIAL REGISTRATION: ClinicalTrials.gov NCT05465486; https://clinicaltrials.gov/ct2/show/NCT05465486 INTERNATIONAL REGISTERED REPORT IDENTIFIER (IRRID): PRR1-10.2196/41152
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spelling pubmed-95163612022-09-29 Neurorehabilitation Through Synergistic Man-Machine Interfaces Promoting Dormant Neuroplasticity in Spinal Cord Injury: Protocol for a Nonrandomized Controlled Trial Athanasiou, Alkinoos Mitsopoulos, Konstantinos Praftsiotis, Apostolos Astaras, Alexander Antoniou, Panagiotis Pandria, Niki Petronikolou, Vasileia Kasimis, Konstantinos Lyssas, George Terzopoulos, Nikos Fiska, Vasilki Kartsidis, Panagiotis Savvidis, Theodoros Arvanitidis, Athanasios Chasapis, Konstantinos Moraitopoulos, Alexandros Nizamis, Kostas Kalfas, Anestis Iakovidis, Paris Apostolou, Thomas Magras, Ioannis Bamidis, Panagiotis JMIR Res Protoc Protocol BACKGROUND: Spinal cord injury (SCI) constitutes a major sociomedical problem, impacting approximately 0.32-0.64 million people each year worldwide; particularly, it impacts young individuals, causing long-term, often irreversible disability. While effective rehabilitation of patients with SCI remains a significant challenge, novel neural engineering technologies have emerged to target and promote dormant neuroplasticity in the central nervous system. OBJECTIVE: This study aims to develop, pilot test, and optimize a platform based on multiple immersive man-machine interfaces offering rich feedback, including (1) visual motor imagery training under high-density electroencephalographic recording, (2) mountable robotic arms controlled with a wireless brain-computer interface (BCI), (3) a body-machine interface (BMI) consisting of wearable robotics jacket and gloves in combination with a serious game (SG) application, and (4) an augmented reality module. The platform will be used to validate a self-paced neurorehabilitation intervention and to study cortical activity in chronic complete and incomplete SCI at the cervical spine. METHODS: A 3-phase pilot study (clinical trial) was designed to evaluate the NeuroSuitUp platform, including patients with chronic cervical SCI with complete and incomplete injury aged over 14 years and age-/sex-matched healthy participants. Outcome measures include BCI control and performance in the BMI-SG module, as well as improvement of functional independence, while also monitoring neuropsychological parameters such as kinesthetic imagery, motivation, self-esteem, depression and anxiety, mental effort, discomfort, and perception of robotics. Participant enrollment into the main clinical trial is estimated to begin in January 2023 and end by December 2023. RESULTS: A preliminary analysis of collected data during pilot testing of BMI-SG by healthy participants showed that the platform was easy to use, caused no discomfort, and the robotics were perceived positively by the participants. Analysis of results from the main clinical trial will begin as recruitment progresses and findings from the complete analysis of results are expected in early 2024. CONCLUSIONS: Chronic SCI is characterized by irreversible disability impacting functional independence. NeuroSuitUp could provide a valuable complementary platform for training in immersive rehabilitation methods to promote dormant neural plasticity. TRIAL REGISTRATION: ClinicalTrials.gov NCT05465486; https://clinicaltrials.gov/ct2/show/NCT05465486 INTERNATIONAL REGISTERED REPORT IDENTIFIER (IRRID): PRR1-10.2196/41152 JMIR Publications 2022-09-13 /pmc/articles/PMC9516361/ /pubmed/36099009 http://dx.doi.org/10.2196/41152 Text en ©Alkinoos Athanasiou, Konstantinos Mitsopoulos, Apostolos Praftsiotis, Alexander Astaras, Panagiotis Antoniou, Niki Pandria, Vasileia Petronikolou, Konstantinos Kasimis, George Lyssas, Nikos Terzopoulos, Vasilki Fiska, Panagiotis Kartsidis, Theodoros Savvidis, Athanasios Arvanitidis, Konstantinos Chasapis, Alexandros Moraitopoulos, Kostas Nizamis, Anestis Kalfas, Paris Iakovidis, Thomas Apostolou, Ioannis Magras, Panagiotis Bamidis. Originally published in JMIR Research Protocols (https://www.researchprotocols.org), 13.09.2022. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work, first published in JMIR Research Protocols, is properly cited. The complete bibliographic information, a link to the original publication on https://www.researchprotocols.org, as well as this copyright and license information must be included.
spellingShingle Protocol
Athanasiou, Alkinoos
Mitsopoulos, Konstantinos
Praftsiotis, Apostolos
Astaras, Alexander
Antoniou, Panagiotis
Pandria, Niki
Petronikolou, Vasileia
Kasimis, Konstantinos
Lyssas, George
Terzopoulos, Nikos
Fiska, Vasilki
Kartsidis, Panagiotis
Savvidis, Theodoros
Arvanitidis, Athanasios
Chasapis, Konstantinos
Moraitopoulos, Alexandros
Nizamis, Kostas
Kalfas, Anestis
Iakovidis, Paris
Apostolou, Thomas
Magras, Ioannis
Bamidis, Panagiotis
Neurorehabilitation Through Synergistic Man-Machine Interfaces Promoting Dormant Neuroplasticity in Spinal Cord Injury: Protocol for a Nonrandomized Controlled Trial
title Neurorehabilitation Through Synergistic Man-Machine Interfaces Promoting Dormant Neuroplasticity in Spinal Cord Injury: Protocol for a Nonrandomized Controlled Trial
title_full Neurorehabilitation Through Synergistic Man-Machine Interfaces Promoting Dormant Neuroplasticity in Spinal Cord Injury: Protocol for a Nonrandomized Controlled Trial
title_fullStr Neurorehabilitation Through Synergistic Man-Machine Interfaces Promoting Dormant Neuroplasticity in Spinal Cord Injury: Protocol for a Nonrandomized Controlled Trial
title_full_unstemmed Neurorehabilitation Through Synergistic Man-Machine Interfaces Promoting Dormant Neuroplasticity in Spinal Cord Injury: Protocol for a Nonrandomized Controlled Trial
title_short Neurorehabilitation Through Synergistic Man-Machine Interfaces Promoting Dormant Neuroplasticity in Spinal Cord Injury: Protocol for a Nonrandomized Controlled Trial
title_sort neurorehabilitation through synergistic man-machine interfaces promoting dormant neuroplasticity in spinal cord injury: protocol for a nonrandomized controlled trial
topic Protocol
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9516361/
https://www.ncbi.nlm.nih.gov/pubmed/36099009
http://dx.doi.org/10.2196/41152
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