Instability detector for quiet standing.

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Instability detector for quiet standing.
Xavier Tortolero Baena
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Last edited by WorkBot
January 24, 2010 | History

Instability detector for quiet standing.

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Incorporating a measure of stability into a portable sensor has a number of clinically relevant applications. This study investigated the feasibility of developing a real-time assessment tool to monitor balance during quiet standing. Forward and backward perturbations were performed on 16 able-bodied subjects using a pulley system attached to the subjects' waist. A linear relationship was found between the maximum centre of pressure (COP) velocity and the maximum COP position caused by the perturbations. As the maximum COP velocity occurs considerably before the maximum COP position, this model serves as an instability predictor. A sensor that measures COP velocity can use the model to predict a maximum COP position and compare it with an instability threshold. Results show that the proposed model is a viable solution to quantitatively measure stability in real-time.

Publish Date
Language
English
Pages
83

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Edition Availability
Cover of: Instability detector for quiet standing.
Instability detector for quiet standing.
2005
in English
Cover of: Instability detector for quiet standing.
Instability detector for quiet standing.
2005
in English

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Book Details


Edition Notes

Source: Masters Abstracts International, Volume: 44-01, page: 0429.

Thesis (M.A.Sc.)--University of Toronto, 2005.

Electronic version licensed for access by U. of T. users.

ROBARTS MICROTEXT copy on microfiche.

The Physical Object

Pagination
83 leaves.
Number of pages
83

ID Numbers

Open Library
OL19214555M
ISBN 10
0494021438

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January 24, 2010 Edited by WorkBot add more information to works
December 11, 2009 Created by WorkBot add works page