Is Trunk Posture in Walking a Better Marker than Gait Speed in Predicting Decline in Function and Subsequent Frailty?

Abstract Background Many recent guidelines and consensus on sarcopenia have incorporated gait speed and grip strength as diagnostic criteria without addressing early posture changes adopted to maintain gait speed before weakness is clinically evident. Objectives Older adults are known to compensate...

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Veröffentlicht in:Journal of the American Medical Directors Association 2016-01, Vol.17 (1), p.65-70
Hauptverfasser: Merchant, Reshma A., MBBS, MRCP, Banerji, Subhasis, PhD, Singh, Gautam, MSc, Chew, Effie, MBBS, MRCP, Poh, Chueh L., PhD, Tapawan, Sarah C., MRCPCH, Guo, Yan R., BSc, Pang, Yu W., Dip, Sharma, Mridula, PhD, Kambadur, Ravi, PhD, Tay, Stacey, MBBS, MMed (Paeds), FRCPCH
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Sprache:eng
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Zusammenfassung:Abstract Background Many recent guidelines and consensus on sarcopenia have incorporated gait speed and grip strength as diagnostic criteria without addressing early posture changes adopted to maintain gait speed before weakness is clinically evident. Objectives Older adults are known to compensate well for declining physiological reserve through environmental modification and posture adaptation. This study aimed to analyze and identify significant posture adaptation in older adults that is required to maintain gait speed in the face of increasing vulnerability. This would be a useful guide for early posture correction exercise interventions to prevent further decline, in addition to traditional gait, balance, and strength training. Design A community-based cross-sectional study. Setting and Participants The participants comprised 90 healthy community-dwelling Chinese men between the ages of 60 and 80 years and 20 Chinese adults between the ages of 21 and 50 years within the normal BMI range as a comparison group. Measurements All the participants underwent handgrip strength testing, 6-minute walk, timed up-and-go (TUG), and motion analysis for gait characteristics. Low function was characterized by slow walking speed (10 seconds), whereas low strength was determined by hand grip dynamometer testing (1.0 m/s). The extent of such adaptation was larger in the vulnerable group as compared with the healthy group. Conclusion Although gait speed is a robust parameter for screening older adults for sarcopenia and frailty, our data suggest that identifying trunk posture adaptation before the onset of decline in gait speed will help in planning interventions in the at-risk community-dwelling older adults even before gait speed declines.
ISSN:1525-8610
1538-9375
DOI:10.1016/j.jamda.2015.08.008