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The dynamic elastic response to impulse synchronisation of composite prosthetic energy storing and returning feet

机译:复合修复体储能和回弹脚对脉冲同步的动态弹性响应

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摘要

In this research, it is proven that perfect synchronisation between the input impulse (human effort) and the ground reaction impulse/impact can result in a phenomenon called the dynamic elastic response to impulse synchronisation with favourable consequences to the behaviour of the energy storing and returning foot. An energy storing and returning composite prosthetic foot was first used in elite competition at the 1988 Paralympic Games. Since its introduction, the prostheses have proven to be a source of controversy. In 2008, it was concluded that the athletes who use such technology when running are in advantageous position when compared to able-bodied athletes. However, these findings have since been disputed. There still remain unanswered questions regarding the level of contribution of energy storing and returning feet in the performance of amputee athletes. A series of investigations have previously been conducted to study the dynamic characteristics of a number of energy storing and returning composite prosthetic feet. It was found that if a sinusoidal input impulse, with a frequency close to one of the energy storing and returning feet’s natural frequencies, could be applied, it can make the energy storing and returning foot susceptible to resonance, which, in the case of bending mode, if sustained can lead to a gain in height or increased velocity.
机译:在这项研究中,已证明输入脉冲(人工)和地面反作用脉冲/冲击之间的完美同步会导致一种称为脉冲同步的动态弹性响应现象,对能量存储和返回的行为产生有利影响脚丫子。 1988年残奥会的精英比赛中首次使用了能量存储和返回的复合假肢脚。自引入以来,假肢已被证明是引起争议的根源。在2008年得出的结论是,与健壮的运动员相比,在跑步时使用这种技术的运动员处于有利的位置。但是,这些发现此后一直存在争议。关于能量存储和双脚返回对截肢运动员表现的贡献水平,仍然存在未解决的问题。先前已经进行了一系列研究,以研究许多能量存储和返回复合修复脚的动力特性。已经发现,如果可以施加频率接近能量存储和返回脚的固有频率之一的正弦输入脉冲,则它会使能量存储和返回脚易于共振,在弯曲的情况下持续运动会导致身高增加或速度增加。

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