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Manual wheelchair propulsion cost across different components and configurations during straight and turning maneuvers

机译:手动轮椅推进在直线和转动时的不同部件和配置中的推进成本

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Aim Maneuvering manual wheelchairs is defined by changes in momentum. The amount of effort required to maneuver a wheelchair is dependent on many factors, some of which reflect the design and configuration of the wheelchair. Objective The objective of this study was to measure the work required to propel a manual wheelchair configured with three weight distributions, three drive wheels and four casters. Methods A novel wheelchair-propelling robot was used as the test platform to measure work while traversing two surfaces using three different maneuvers which were defined to highlight different kinetic energies and energy loss mechanisms. Results Overall, propulsion cost decreased with an increase in load on the drive wheels. Pneumatic drive wheels exhibited lower propulsion costs compared to a solid tire. Two casters, a 4″ dia × 1.5″ and a 5″ dia × 1″, exhibited better overall performance compared to 5″ dia × 1.5″ solid and 6″ dia × 1″ pneumatic casters. Discussion The results indicate that drive wheel load and types of drive wheels and casters impact propulsion cost and their influences differ across maneuvers and surfaces. The approach is well suited to assess equivalency in components and configurations. Assessment of performance equivalency would empower clinicians and users with important knowledge when selecting components.
机译:AIM机动手动轮椅由势头的变化定义。操纵轮椅所需的努力量取决于许多因素,其中一些因素反映了轮椅的设计和配置。目的本研究的目的是衡量推动手动轮椅所需的工作,配置有三个重量分布,三个驱动轮和四个脚轮。方法采用新型轮椅推进机器人作为测量工作的测试平台,同时使用三种不同的机动定义为突出不同的动力学和能量损失机制来训练两个表面。结果总体而言,推进成本随着驱动轮上的负荷增加而降低。与固体轮胎相比,气动驱动轮表现出较低的推进成本。两个脚轮,4“Dia×1.5”和5“Dia×1”,与5“Dia×1.5”固体和6“Dia×1”气动脚轮相比,整体性能更好。讨论结果表明,驱动车轮负荷和驱动轮和脚轮的类型冲击推进成本及其影响在机动和表面上不同。该方法非常适合评估组件和配置的等效。在选择组件时,对性能等效的评估将赋予临床医生和用户具有重要知识。

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