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首页> 外文期刊>Applied Ergonomics >Hand forces exerted by long-term care staff when pushing wheelchairs on compliant and non-compliant flooring
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Hand forces exerted by long-term care staff when pushing wheelchairs on compliant and non-compliant flooring

机译:长期护理人员施加的手力在推动符合符合条件和不合规的地板上推动轮椅时

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摘要

Purpose-designed compliant flooring and carpeting have been promoted as a means for reducing fall-related injuries in high-risk environments, such as long-term care. However, it is not known whether these surfaces influence the forces that long-term care staff exert when pushing residents in wheelchairs. We studied 14 direct care staff who pushed a loaded wheelchair instrumented with a triaxial load cell to test the effects on hand force of flooring overlay (vinyl versus carpet) and flooring subfloor (concrete versus compliant rubber [brand: SmartCells]). During straight-line pushing, carpet overlay increased initial and sustained hand forces compared to vinyl overlay by 22-49% over a concrete subfloor and by 8-20% over a compliant subfloor. Compliant subflooring increased initial and sustained hand forces compared to concrete subflooring by 18-31% when under a vinyl overlay. In contrast, compliant flooring caused no change in initial or sustained hand forces compared to concrete subflooring when under a carpet overlay.
机译:目的设计的柔顺地板和地毯被推广为减少高风险环境中患有患有坠落伤害的手段,例如长期护理。然而,尚不清楚这些表面是否会影响长期护理人员在推动轮椅上推动居民时的力量。我们研究了14名直接护理人员,将装载轮椅用三轴称重传感器推动,以测试地板覆盖的手力(乙烯基与地毯)和地板底板(混凝土与兼容橡胶[品牌:SmartCells])的效果。在直线推动期间,与乙烯基覆盖物相比,地毯覆盖在混凝土底层覆盖层上增加了初始和持续的手力,并通过符合副的底层覆盖22-49%。与乙烯基覆盖物下的混凝土沉积相比,符合初始和持续的手力增加初始和持续的手力。相反,与在地毯覆盖层下方的混凝土沉积时,符合符合地板在初始或持续的手力上不会发生变化。

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