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Quantifying sit-to-stand and stand-to-sit transitions in free-living environments using the activPAL thigh-worn activity monitor

Pickford, CG; Findlow, AH; Kerr, A; Banger, Matthew; Clarke-Cornwell, AM; Hollands, K; Quinn, Terry; Granat, MH

Authors

CG Pickford

AH Findlow

A Kerr

Matthew Banger

K Hollands

Terry Quinn



Abstract

Purpose: Standing up, sitting down and walking require considerable effort and coordination, which are crucial indicators to rehabilitation (e.g. stroke), and in older populations may indicate the onset of frailty and physical and cognitive decline. Currently, there are few reports robustly quantifying sit-to-stand and stand-to-sit transitions in free-living environments. The aim of this study was to identify and quantify these transitions using the peak velocity of sit-to-stand and stand-to-sit transitions to determine if these velocities were different in a healthy cohort and a mobility-impaired population.

Methods: Free-living sit-to-stand and stand-to-sit acceleration data were recorded from 21 healthy volunteers and 34 stroke survivors using activPAL3™ monitors over a one-week period. Thigh inclination velocity was calculated from these accelerometer data. Maximum velocities were compared between populations.

Results: A total of 10,299 and 11,392 sit-to-stand and stand-to-sit transitions were recorded in healthy volunteers and stroke survivors, respectively. Healthy volunteers had significantly higher overall mean peak velocities for both transitions compared with stroke survivors [70.7°/s ± 52.2 versus 44.2°/s ± 28.0 for sit-to-stand, P < 0.001 and 74.7°/s ± 51.8 versus 46.0°/s ± 31.9 for stand-to-sit; P < 0.001]. Mean peak velocity of transition was associated with increased variation in peak velocity across both groups.

Conclusion: There were significant differences in the mean peak velocity of sit-to-stand and stand-to-sit transitions between the groups. Variation in an individual's mean peak velocity may be associated with the ability to perform these transitions. This method could be used to evaluate the effectiveness of interventions following injury such as stroke, as well as monitor decline in functional ability.

Citation

Pickford, C., Findlow, A., Kerr, A., Banger, M., Clarke-Cornwell, A., Hollands, K., …Granat, M. (2019). Quantifying sit-to-stand and stand-to-sit transitions in free-living environments using the activPAL thigh-worn activity monitor. Gait & Posture, 73, 140-146. https://doi.org/10.1016/j.gaitpost.2019.07.126

Journal Article Type Article
Acceptance Date Jul 1, 2019
Online Publication Date Jul 12, 2019
Publication Date Sep 1, 2019
Deposit Date Aug 19, 2019
Publicly Available Date Jul 12, 2020
Journal Gait & Posture
Print ISSN 0966-6362
Publisher Elsevier
Volume 73
Pages 140-146
DOI https://doi.org/10.1016/j.gaitpost.2019.07.126
Publisher URL https://doi.org/10.1016/j.gaitpost.2019.07.126
Related Public URLs https://www.sciencedirect.com/journal/gait-and-posture

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