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Step Prediction During Perturbed Standing Using Center Of Pressure Measurements

The development of a sensor that can measure balance during quiet standing and predict stepping response in the event of perturbation has many clinically relevant applications, including closed-loop control of a neuroprothesis for standing. This study investigated the feasibility of an algorithm tha...

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Detalles Bibliográficos
Autores principales: Tortolero, Xavier, Masani, Kei, Popovic, Milos R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Molecular Diversity Preservation International (MDPI) 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3800359/
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author Tortolero, Xavier
Masani, Kei
Popovic, Milos R.
author_facet Tortolero, Xavier
Masani, Kei
Popovic, Milos R.
author_sort Tortolero, Xavier
collection PubMed
description The development of a sensor that can measure balance during quiet standing and predict stepping response in the event of perturbation has many clinically relevant applications, including closed-loop control of a neuroprothesis for standing. This study investigated the feasibility of an algorithm that can predict in real-time when an able-bodied individual who is quietly standing will have to make a step to compensate for an external perturbation. Anterior and posterior perturbations were performed on 16 able-bodied subjects using a pulley system with a dropped weight. A linear relationship was found between the peak center of pressure (COP) velocity and the peak COP displacement caused by the perturbation. This result suggests that one can predict when a person will have to make a step based on COP velocity measurements alone. Another important feature of this finding is that the peak COP velocity occurs considerably before the peak COP displacement. As a result, one can predict if a subject will have to make a step in response to a perturbation sufficiently ahead of the time when the subject is actually forced to make the step. The proposed instability detection algorithm will be implemented in a sensor system using insole sheets in shoes with miniturized pressure sensors by which the COPv can be continuously measured. The sensor system will be integrated in a closed-loop feedback system with a neuroprosthesis for standing in the near future.
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spelling pubmed-38003592013-10-22 Step Prediction During Perturbed Standing Using Center Of Pressure Measurements Tortolero, Xavier Masani, Kei Popovic, Milos R. Sensors (Basel) Full Paper The development of a sensor that can measure balance during quiet standing and predict stepping response in the event of perturbation has many clinically relevant applications, including closed-loop control of a neuroprothesis for standing. This study investigated the feasibility of an algorithm that can predict in real-time when an able-bodied individual who is quietly standing will have to make a step to compensate for an external perturbation. Anterior and posterior perturbations were performed on 16 able-bodied subjects using a pulley system with a dropped weight. A linear relationship was found between the peak center of pressure (COP) velocity and the peak COP displacement caused by the perturbation. This result suggests that one can predict when a person will have to make a step based on COP velocity measurements alone. Another important feature of this finding is that the peak COP velocity occurs considerably before the peak COP displacement. As a result, one can predict if a subject will have to make a step in response to a perturbation sufficiently ahead of the time when the subject is actually forced to make the step. The proposed instability detection algorithm will be implemented in a sensor system using insole sheets in shoes with miniturized pressure sensors by which the COPv can be continuously measured. The sensor system will be integrated in a closed-loop feedback system with a neuroprosthesis for standing in the near future. Molecular Diversity Preservation International (MDPI) 2007-04-18 /pmc/articles/PMC3800359/ Text en © 2007 by MDPI (http://www.mdpi.org). Reproduction is permitted for noncommercial purposes.
spellingShingle Full Paper
Tortolero, Xavier
Masani, Kei
Popovic, Milos R.
Step Prediction During Perturbed Standing Using Center Of Pressure Measurements
title Step Prediction During Perturbed Standing Using Center Of Pressure Measurements
title_full Step Prediction During Perturbed Standing Using Center Of Pressure Measurements
title_fullStr Step Prediction During Perturbed Standing Using Center Of Pressure Measurements
title_full_unstemmed Step Prediction During Perturbed Standing Using Center Of Pressure Measurements
title_short Step Prediction During Perturbed Standing Using Center Of Pressure Measurements
title_sort step prediction during perturbed standing using center of pressure measurements
topic Full Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3800359/
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