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A novel in vivo impact device for evaluation of sudden limb loading response

机译:一种用于评估肢体突然负荷反应的新型体内冲击装置

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摘要

The lower limbs are subjected to large impact forces on a daily basis during gait, and ambulators rely on various mechanisms to protect the musculoskeletal system from these potentially damaging shocks. However, it is difficult to assess the efficacy of anatomical mechanisms and potential clinical interventions on impact forces because of limitations of the testing environment. The current paper describes a new in vivo measurement device (sudden loading evaluation device, or SLED) designed to address shortcomings of previous loading protocols. To establish the repeatability and validity of this testing device, reliability and human participant data were collected while the stiffnesses of simulated and prosthetic limbs were systematically varied. The peak impact forces delivered by the SLED ranged from 706 +/- 3 N to 2157 +/- 32 N during reliability testing and from 784 +/- 30 N to 938 +/- 18 N with the human participant. The relatively low standard deviations indicate good reliability within the impacts delivered by the SLED, while the magnitude of the loads experienced by the human participant (98-117% BW) were comparable to ground reaction forces during level walking. Thus, the SLED may be valuable as a research tool for investigations of lower-limb impact loading events. Published by Elsevier Ltd on behalf of IPEM.
机译:在步态期间,下肢每天都会受到很大的冲击力,而步行者依靠各种机制来保护肌肉骨骼系统免受这些潜在的破坏性冲击。但是,由于测试环境的局限性,很难评估解剖机制和对冲击力的潜在临床干预的功效。当前的论文描述了一种新的体内测量设备(突然加载评估设备,或SLED),旨在解决以前加载协议的缺点。为了确定该测试装置的可重复性和有效性,在系统地改变了模拟肢和假肢的刚度的同时,收集了可靠性和人类参与者的数据。在可靠性测试过程中,SLED传递的最大冲击力范围为706 +/- 3 N至2157 +/- 32 N,人类参与者的峰值冲击力为784 +/- 30 N至938 +/- 18N。相对较低的标准偏差表示在SLED传递的冲击中具有良好的可靠性,而人类参与者承受的载荷大小(98-117%BW)与水平行走过程中的地面反作用力相当。因此,SLED作为研究下肢冲击载荷事件的研究工具可能是有价值的。由Elsevier Ltd代表IPEM发布。

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