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Predicting and Monitoring Upper-Limb Rehabilitation Outcomes Using Clinical and Wearable Sensor Data in Brain Injury Survivors

OBJECTIVE: Rehabilitation specialists have shown considerable interest for the development of models, based on clinical data, to predict the response to rehabilitation interventions in stroke and traumatic brain injury survivors. However, accurate predictions are difficult to obtain due to the varia...

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Autores principales: Lee, Sunghoon I., Adans-Dester, Catherine P., O’Brien, Anne T., Vergara-Diaz, Gloria P., Black-Schaffer, Randie, Zafonte, Ross, Dy, Jennifer G., Bonato, Paolo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8723794/
https://www.ncbi.nlm.nih.gov/pubmed/32997621
http://dx.doi.org/10.1109/TBME.2020.3027853
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author Lee, Sunghoon I.
Adans-Dester, Catherine P.
O’Brien, Anne T.
Vergara-Diaz, Gloria P.
Black-Schaffer, Randie
Zafonte, Ross
Dy, Jennifer G.
Bonato, Paolo
author_facet Lee, Sunghoon I.
Adans-Dester, Catherine P.
O’Brien, Anne T.
Vergara-Diaz, Gloria P.
Black-Schaffer, Randie
Zafonte, Ross
Dy, Jennifer G.
Bonato, Paolo
author_sort Lee, Sunghoon I.
collection PubMed
description OBJECTIVE: Rehabilitation specialists have shown considerable interest for the development of models, based on clinical data, to predict the response to rehabilitation interventions in stroke and traumatic brain injury survivors. However, accurate predictions are difficult to obtain due to the variability in patients’ response to rehabilitation interventions. This study aimed to investigate the use of wearable technology in combination with clinical data to predict and monitor the recovery process and assess the responsiveness to treatment on an individual basis. METHODS: Gaussian Process Regression-based algorithms were developed to estimate rehabilitation outcomes (i.e., Functional Ability Scale scores) using either clinical or wearable sensor data or a combination of the two. RESULTS: The algorithm based on clinical data predicted rehabilitation outcomes with a Pearson’s correlation of 0.79 compared to actual clinical scores provided by clinicians but failed to model the variability in responsiveness to the intervention observed across individuals. In contrast, the algorithm based on wearable sensor data generated rehabilitation outcome estimates with a Pearson’s correlation of 0.91 and modeled the individual responses to rehabilitation more accurately. Furthermore, we developed a novel approach to combine estimates derived from the clinical data and the sensor data using a constrained linear model. This approach resulted in a Pearson’s correlation of 0.94 between estimated and clinician-provided scores. CONCLUSION: This algorithm could enable the design of patient-specific interventions based on predictions of rehabilitation outcomes relying on clinical and wearable sensor data. Significance: This is important in the context of developing precision rehabilitation interventions.
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spelling pubmed-87237942022-01-03 Predicting and Monitoring Upper-Limb Rehabilitation Outcomes Using Clinical and Wearable Sensor Data in Brain Injury Survivors Lee, Sunghoon I. Adans-Dester, Catherine P. O’Brien, Anne T. Vergara-Diaz, Gloria P. Black-Schaffer, Randie Zafonte, Ross Dy, Jennifer G. Bonato, Paolo IEEE Trans Biomed Eng Article OBJECTIVE: Rehabilitation specialists have shown considerable interest for the development of models, based on clinical data, to predict the response to rehabilitation interventions in stroke and traumatic brain injury survivors. However, accurate predictions are difficult to obtain due to the variability in patients’ response to rehabilitation interventions. This study aimed to investigate the use of wearable technology in combination with clinical data to predict and monitor the recovery process and assess the responsiveness to treatment on an individual basis. METHODS: Gaussian Process Regression-based algorithms were developed to estimate rehabilitation outcomes (i.e., Functional Ability Scale scores) using either clinical or wearable sensor data or a combination of the two. RESULTS: The algorithm based on clinical data predicted rehabilitation outcomes with a Pearson’s correlation of 0.79 compared to actual clinical scores provided by clinicians but failed to model the variability in responsiveness to the intervention observed across individuals. In contrast, the algorithm based on wearable sensor data generated rehabilitation outcome estimates with a Pearson’s correlation of 0.91 and modeled the individual responses to rehabilitation more accurately. Furthermore, we developed a novel approach to combine estimates derived from the clinical data and the sensor data using a constrained linear model. This approach resulted in a Pearson’s correlation of 0.94 between estimated and clinician-provided scores. CONCLUSION: This algorithm could enable the design of patient-specific interventions based on predictions of rehabilitation outcomes relying on clinical and wearable sensor data. Significance: This is important in the context of developing precision rehabilitation interventions. 2021-05-21 2021-06 /pmc/articles/PMC8723794/ /pubmed/32997621 http://dx.doi.org/10.1109/TBME.2020.3027853 Text en https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 License. For more information, see https://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Lee, Sunghoon I.
Adans-Dester, Catherine P.
O’Brien, Anne T.
Vergara-Diaz, Gloria P.
Black-Schaffer, Randie
Zafonte, Ross
Dy, Jennifer G.
Bonato, Paolo
Predicting and Monitoring Upper-Limb Rehabilitation Outcomes Using Clinical and Wearable Sensor Data in Brain Injury Survivors
title Predicting and Monitoring Upper-Limb Rehabilitation Outcomes Using Clinical and Wearable Sensor Data in Brain Injury Survivors
title_full Predicting and Monitoring Upper-Limb Rehabilitation Outcomes Using Clinical and Wearable Sensor Data in Brain Injury Survivors
title_fullStr Predicting and Monitoring Upper-Limb Rehabilitation Outcomes Using Clinical and Wearable Sensor Data in Brain Injury Survivors
title_full_unstemmed Predicting and Monitoring Upper-Limb Rehabilitation Outcomes Using Clinical and Wearable Sensor Data in Brain Injury Survivors
title_short Predicting and Monitoring Upper-Limb Rehabilitation Outcomes Using Clinical and Wearable Sensor Data in Brain Injury Survivors
title_sort predicting and monitoring upper-limb rehabilitation outcomes using clinical and wearable sensor data in brain injury survivors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8723794/
https://www.ncbi.nlm.nih.gov/pubmed/32997621
http://dx.doi.org/10.1109/TBME.2020.3027853
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