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DEVELOPMENT AND VALIDATION OF A GAIT CLASSIFICATION SYSTEM FOR OLDER ADULTS - BY MOVEMENT CONTROL AND BIOMECHANICAL FACTORS

Huang, Wen-Ni Wennie (2006) DEVELOPMENT AND VALIDATION OF A GAIT CLASSIFICATION SYSTEM FOR OLDER ADULTS - BY MOVEMENT CONTROL AND BIOMECHANICAL FACTORS. Doctoral Dissertation, University of Pittsburgh. (Unpublished)

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Abstract

Purpose: The purpose of this study was to establish reliability and validity of a clinically useful gait classification system for older adults using gait and physical performance measures in 2 different populations. Methods: We classified gait patterns using structured clinical observation and expected the gait patterns to be defined by variability of movement (consistent, inconsistent) and postural biomechanical factors (usual, flexed, extended, crouched) observed in walking. Male veterans (n=106) referred to the VA GEM Program (mean age, 76; SD, 7.1; range, 63-97 years) were videotaped for analyses. The inter- and intra-rater reliability was determined. Pair-wise comparisons across various groups were performed to validate the gait classification using gait parameters (gait speed, step length, width and variability), lower extremity range of motion and muscle strength, physical function in ADL (Physical Performance Test, PPT) and gait abnormalities (GARS-M). The validity of the gait classification system was further validated in a different population consisting of 34 community-dwelling older adults (mean age, 84; SD, 5.0; range, 70-91 years). Results: Kappas for interrater reliability of the variability and postural components of the gait classification system were 0.59 and 0.75, respectively; for intrarater reliability, 0.82 and 0.72, respectively. Consistent and inconsistent groups were different in gait speed (0.66 and 0.49m/s, respectively; p=0.003), step length (0.46 and 0.38m; p=0.008), step length variability (7.47% and 12.74%; p=0.043), the PPT (15.80 and 11.73; p<0.001) and GARS-M (5.83 and 10.66; p<0.001). Within both consistent and inconsistent groups, three postural pattern groups (usual, flexed, crouched) differed in gait speed, step length, PPT and GARS-M (p<0.05). When validated in a different population, the mean difference of gait speed across groups was greater than the reported meaningful change. Conclusions: Gait patterns of older adults, based on biomechanics and movement control, were reliably recognized and validated by mean differences in abnormal characteristics of gait and physical performance measures across patterns. The variability and postures determined by observation of gait by the therapists can be used to quickly identify and classify older adults with mobility problems in clinical settings, allowing for possible targeted interventions for specific gait deficits.


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Details

Item Type: University of Pittsburgh ETD
Status: Unpublished
Creators/Authors:
CreatorsEmailPitt UsernameORCID
Huang, Wen-Ni Wenniehuangwennie@yahoo.com
ETD Committee:
TitleMemberEmail AddressPitt UsernameORCID
Committee ChairVanSwearingen, Jessiejessievs@pitt.eduJESSIEVS
Committee MemberBrach, Jenniferjbrach@pitt.eduJBRACH
Committee MemberStudenski, Stephaniestudenskis@dom.pitt.eduSAS33
Committee MemberPerera, Subashanpereras@msx.dept-med.pitt.eduKSP9
Date: 8 September 2006
Date Type: Completion
Defense Date: 2 August 2006
Approval Date: 8 September 2006
Submission Date: 8 August 2006
Access Restriction: No restriction; Release the ETD for access worldwide immediately.
Institution: University of Pittsburgh
Schools and Programs: School of Health and Rehabilitation Sciences > Rehabilitation Science
Degree: PhD - Doctor of Philosophy
Thesis Type: Doctoral Dissertation
Refereed: Yes
Uncontrolled Keywords: community-dwelling; elderly; motor control; observational gait analysis; physical therapy; variability
Other ID: http://etd.library.pitt.edu/ETD/available/etd-08082006-172300/, etd-08082006-172300
Date Deposited: 10 Nov 2011 19:58
Last Modified: 15 Nov 2016 13:48
URI: http://d-scholarship.pitt.edu/id/eprint/8988

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