A novel approach to directly measuring wheel and caster rolling resistance accurately predicts user-wheelchair system-level rolling resistance.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-01-01 DOI:10.1177/20556683231180877
Holly Wilson-Jene, Rachel E Cowan, Jonathan Pearlman
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Abstract

Introduction: Clinical practice guidelines for preservation of upper extremity recommend minimizing wheelchair propulsion forces. Our ability to make quantitative recommendations about the effects of wheelchair configuration changes is limited by system-level tests to measure rolling resistance (RR). We developed a method that directly measures caster and propulsion wheel RR at a component-level. The study purpose is to assess accuracy and consistency of component-level estimates of system-level RR.

Methods: The RR of N = 144 simulated unique wheelchair-user systems were estimated using our novel component-level method and compared to system-level RR measured by treadmill drag tests, representing combinations of caster types/diameters, rear wheel types/diameters, loads, and front-rear load distributions. Accuracy was assessed by Bland-Altman limits of agreement (LOA) and consistency by intraclass correlation (ICC).

Results: Overall ICC was 0.94, 95% CI [0.91-0.95]. Component-level estimates were systematically lower than system-level (-1.1 N), with LOA +/-1.3 N. RR force differences between methods were constant over the range of test conditions.

Conclusion: Component-level estimates of wheelchair-user system RR are accurate and consistent when compared to a system-level test method, evidenced by small absolute LOA and high ICC. Combined with a prior study on precision, this study helps to establish validity for this RR test method.

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一种直接测量车轮和脚轮滚动阻力的新方法可以准确预测用户轮椅系统级滚动阻力。
简介:保留上肢的临床实践指南建议尽量减少轮椅推进力。我们对轮椅配置变化的影响提出定量建议的能力受到测量滚动阻力(RR)的系统级测试的限制。我们开发了一种在组件级别直接测量脚轮和推进轮RR的方法。研究的目的是评估系统水平RR的成分水平估计的准确性和一致性。方法:使用我们新颖的组件级方法估算N = 144个模拟轮椅使用者系统的RR,并将其与通过跑步机阻力试验测量的系统级RR进行比较,代表脚轮类型/直径、后轮类型/直径、负载和前后负载分布的组合。准确度由Bland-Altman一致性限(LOA)和一致性由类内相关性(ICC)评估。结果:总体ICC为0.94,95% CI[0.91-0.95]。组件水平的估计值系统性地低于系统水平(-1.1 N), LOA +/-1.3 N,在测试条件范围内,方法之间的RR力差异是恒定的。结论:与系统级测试方法相比,轮椅使用者系统RR的组件级估计是准确和一致的,证明了小的绝对LOA和高ICC。结合前人对精度的研究,本研究有助于建立该RR检验方法的效度。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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