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Energy storage and release of prosthetic feet Part 1

机译:储能和释放假肢脚第1部分

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摘要

The energy storing and releasing behaviour of 2 energy storing feet (ESF) and 2 conventional prosthetic feet (CF) were compared (ESF: Otto Bock Dynamic Pro and Hanger Quantum; CF: Otto Bock Multi Axial and Otto Bock Lager). Ten trans-tibial amputees were selected. The study was designed as a double-blind, randomised trial. For gait analysis a VICON motion analysis system was used with 2 AMTI force platforms. A special measuring device was used for measuring energy storage and release of the foot during a simulated step. The impulses of the anteroposterior component of the ground force showed small, statistically non-significant differences (deceleration phase: 22.7–23.4 Ns; acceleration phase: 17.0–18.4 Ns). The power storage and release phases as well as the net results also showed small differences (maximum difference in net result is 0.03 J kg−1). It was estimated that these differences lead to a maximum saving of 3% of metabolic energy during walking. It was considered unlikely that the subjects would notice this difference. It was concluded that during walking differences in mechanical energy expenditure of this magnitude are probably not of clinical relevance. Ankle power, as an indicator for energy storage and release gave different results to the energy storage and release as measured with the special test device, especially during landing response. In the biomechanical model (based on inverse dynamics) used in the gait analysis the deformation of the material is not taken into consideration and hence this method of gait analysis is probably not suitable for calculation of shock absorption.
机译:比较了2个能量储存脚(ESF)和2种常规假肢脚(CF)的能量储存和释放行为(ESF:OTTO BOCK动态PRO和吊架量子; CF:OTTO BOCK多轴和OTTO BOCK LAGER)。选择了十个跨胫骨疗法。该研究被设计为双盲随机试验。对于步态分析,vicon运动分析系统与2个AMTI力平台一起使用。用于在模拟步骤期间使用特殊测量装置来测量脚的储能和释放。接地力的前后组分的脉冲显示出小,统计学上不显着差异(减速阶段:22.7-23.4 ns;加速阶段:17.0-18.4 ns)。电力存储和释放阶段以及净结果也显示出小的差异(最大差异为0.03J kg-1)。据估计,这些差异导致步行期间最大限度地节省了3%的代谢能量。被认为是受试者会注意到这种差异。得出结论,在步行差异期间,这种幅度的机械能耗可能不是临床相关性。脚踝功率,作为能量存储和释放的指示器,通过特殊测试装置测量的能量存储和释放的指示器产生了不同的结果,特别是在着陆响应期间。在步态分析中使用的生物力学模型(基于逆动力学)中,未考虑材料的变形,因此这种步态分析方法可能不适合计算减震。

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