Design of a robot for gait rehabilitation
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2009.
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Format: | Thesis |
Language: | eng |
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Massachusetts Institute of Technology
2011
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Online Access: | http://hdl.handle.net/1721.1/62999 |
_version_ | 1826190434030845952 |
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author | Bosecker, Caitlyn Joyce |
author2 | Hermano Igo Krebs. |
author_facet | Hermano Igo Krebs. Bosecker, Caitlyn Joyce |
author_sort | Bosecker, Caitlyn Joyce |
collection | MIT |
description | Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2009. |
first_indexed | 2024-09-23T08:39:53Z |
format | Thesis |
id | mit-1721.1/62999 |
institution | Massachusetts Institute of Technology |
language | eng |
last_indexed | 2024-09-23T08:39:53Z |
publishDate | 2011 |
publisher | Massachusetts Institute of Technology |
record_format | dspace |
spelling | mit-1721.1/629992019-04-09T19:04:18Z Design of a robot for gait rehabilitation Bosecker, Caitlyn Joyce Hermano Igo Krebs. Massachusetts Institute of Technology. Dept. of Mechanical Engineering. Massachusetts Institute of Technology. Dept. of Mechanical Engineering. Mechanical Engineering. Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2009. Cataloged from PDF version of thesis. Includes bibliographical references. The ability to walk is important for independent living and when this capacity is affected by injury, gait therapy is the traditional approach to re-train the nervous system, to re-build muscle strength, to improve balance, and to re-train kinematics in order to reduce the stresses applied to bones and muscles. The importance of this problem is illustrated by the approximately 5.8 million stroke survivors alive in the US today and an estimated 700,000 strokes occurring each year. In fact, for stroke survivors with mild to moderate impairment, only 37% regain the ability to walk within one week post-stroke and 73% fall within the first six months. Falls are a leading cause of injury among Americans over 65 years old with over one third of this population experiencing a fall each year and an unsteady gait increases this risk. This growing population will require gait therapy. This thesis presents the design, development, fabrication, and proof-of-concept testing for a novel device to deliver gait therapy. While robotic devices exist, none of them take advantage of the concept of passive walkers and most focus on reproducing gait kinematics for impaired patients. Yet research has found that appropriate neural input is an important factor in efficacious therapy. For gait, this input would be the collision between the foot and the ground at heel-strike. The goal of this novel device is to allow patients to begin gait therapy before they are able to independently walk overground while maximizing the amount interface driven neural input during stepping in a safe environment. by Caitlyn Joyce Bosecker. S.M. 2011-05-23T17:59:37Z 2011-05-23T17:59:37Z 2009 2009 Thesis http://hdl.handle.net/1721.1/62999 720668014 eng M.I.T. theses are protected by copyright. They may be viewed from this source for any purpose, but reproduction or distribution in any format is prohibited without written permission. See provided URL for inquiries about permission. http://dspace.mit.edu/handle/1721.1/7582 165 p. application/pdf Massachusetts Institute of Technology |
spellingShingle | Mechanical Engineering. Bosecker, Caitlyn Joyce Design of a robot for gait rehabilitation |
title | Design of a robot for gait rehabilitation |
title_full | Design of a robot for gait rehabilitation |
title_fullStr | Design of a robot for gait rehabilitation |
title_full_unstemmed | Design of a robot for gait rehabilitation |
title_short | Design of a robot for gait rehabilitation |
title_sort | design of a robot for gait rehabilitation |
topic | Mechanical Engineering. |
url | http://hdl.handle.net/1721.1/62999 |
work_keys_str_mv | AT boseckercaitlynjoyce designofarobotforgaitrehabilitation |