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The influence of a polymer damper on swing-through crutch gait biomechanics

机译:聚合物阻尼器对摆动式拐杖步态生物力学的影响

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摘要

Forearm crutch technology has evolved slowly compared to other assistive mobility devices, despite the highly repetitive nature of forearm crutch gait and the high incidence of overuse injuries. Using 13 able-bodied volunteers between the ages of 19 and 27, we compared the ground reaction forces of a novel crutch design featuring an elastomeric polymer situated below the handle to an identical design without a damper system and to a commercially available generic rigid forearm crutch model. There were no differences in peak vertical force or impulse between crutches. The crutch with the damper system demonstrated a significantly smaller peak braking force and impulse compared to the generic forearm crutch model. However, the crutch with the damper system demonstrated a significantly larger peak propulsive force and impulse compared to both crutch models. This finding indicates that a forearm crutch with a damper system may help to propel the crutch forward when walking on level surfaces, which could impact forward momentum. (C) 2016 Published by Elsevier Ltd on behalf of IPEM.
机译:尽管前臂拐杖步态具有高度重复性且过度使用伤的发生率很高,但与其他辅助移动设备相比,前臂拐杖技术发展缓慢。我们使用了13名年龄在19至27岁之间的身体健全的志愿者,将新型手杖设计(其手柄下方具有弹性体聚合物)的地面反作用力与没有阻尼系统的相同设计与市售的通用刚性前臂手杖进行了比较。模型。拐杖之间的峰值垂直力或脉冲没有差异。与通用前臂拐杖模型相比,带有减震系统的拐杖表现出明显较小的峰值制动力和冲击力。然而,与两个拐杖型号相比,带有减震系统的拐杖表现出明显更大的峰值推进力和冲击力。该发现表明,带有减震系统的前臂拐杖可能有助于在水平地面上行走时向前推动拐杖,这可能会影响向前的动量。 (C)2016由Elsevier Ltd代表IPEM发布。

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