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  5. COMPARATIVE STUDY ON POSTURE AND ITS INFLUENCES ON HORIZONTAL GROUND REACTION FORCES GENERATED BY MUSCLES: IMPLICATIONS FOR CROUCH GAIT
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COMPARATIVE STUDY ON POSTURE AND ITS INFLUENCES ON HORIZONTAL GROUND REACTION FORCES GENERATED BY MUSCLES: IMPLICATIONS FOR CROUCH GAIT

Date Issued
December 1, 2011
Author(s)
Hoang, Hoa Xuan
Advisor(s)
Jeffrey A. Reinbolt
Additional Advisor(s)
William R. Hamel
Richard D. Komistek
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/31974
Abstract

Crouch gait decreases walking efficiency due to the increased knee and hip flexion during the stance phase of gait. Crouch gait is generally considered to be disadvantageous for patients with cerebral palsy; however, a crouched posture may afford biomechanical advantages that lead some patients to adopt a crouch gait.


To investigate one possible advantage of crouch gait, a musculoskeletal model created in OpenSim was placed in 15 different postures from upright to severe crouch during initial, middle, and final stance of the gait cycle. A series of optimizations were performed for each posture to maximize ground reaction forces for the 8 compass directions in the transverse plane by modifying muscle forces acting on the model. We compared the areas of the force profiles across all postures.

An overall larger force profile area is allowed by postures from mild crouch (for initial stance) to crouch (for final stance). The overall ability to generate larger ground reaction force profiles represents a mechanical advantage of a crouched posture. This increase in muscle capacity while in a crouched posture may allow a patient to generate new movements to compensate for impairments associated with cerebral palsy, such as motor control deficits.

Subjects

musculoskeletal

modeling

optimization

cerebral palsy

crouch gait

OpenSim

Disciplines
Biomechanical Engineering
Biomechanics and Biotransport
Biomedical Engineering and Bioengineering
Degree
Master of Science
Major
Biomedical Engineering
Embargo Date
December 1, 2011
File(s)
Thumbnail Image
Name

HoaHoang_Masters_Thesis_v3.pdf

Size

41.03 MB

Format

Adobe PDF

Checksum (MD5)

7845c9aa10bcafe4226bad03d5804298


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