Reliability and feasibility of gait initiation centre-of-pressure excursions using a Wii ® Balance Board in older adults at risk of falling

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Abstract

Background: Impairments in dynamic balance have a detrimental effect in older adults at risk of falls (OARF). Gait initiation (GI) is a challenging transitional movement. Centre of pressure (COP) excursions using force plates have been used to measure GI performance. The Nintendo Wii Balance Board (WBB) offers an alternative to a standard force plate for the measurement of CoP excursion. Aims: To determine the reliability of COP excursions using the WBB, and its feasibility within a 4-week strength and balance intervention (SBI) treating OARF. Methods: Ten OARF subjects attending SBI and ten young healthy adults, each performed three GI trials after 10 s of quiet stance from a standardised foot position (shoulder width) before walking forward 3 m to pick up an object. Averaged COP mediolateral (ML) and anteroposterior (AP) excursions (distance) and path-length time (GI-onset to first toe-off) were analysed. Results: WBB ML (0.866) and AP COP excursion (0.895) reliability (ICC 3,1 ) was excellent, and COP path-length reliability was fair (0.517). Compared to OARF, healthy subjects presented with larger COP excursion in both directions and shorter COP path length. OARF subjects meaningfully improved their timed-up-and-go and ML COP excursion between weeks 1–4, while AP COP excursions, path length, and confidence-in-balance remained stable. Discussion: COP path length and excursion directions probably measure different GI postural control attributes. Limitations in WBB accuracy and precision in transition tasks needs to be established before it can be used clinically to measure postural aspects of GI viably. Conclusions: The WBB could provide valuable clinical evaluation of balance function in OARF.

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Lee, J., Webb, G., Shortland, A. P., Edwards, R., Wilce, C., & Jones, G. D. (2019). Reliability and feasibility of gait initiation centre-of-pressure excursions using a Wii ® Balance Board in older adults at risk of falling. Aging Clinical and Experimental Research, 31(2), 257–263. https://doi.org/10.1007/s40520-018-0945-6

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