首页> 外文会议>International Joint Conference on Advanced Engineering and Technology;International Symposium on Advanced Mechanical and Power Engineering >Effects of Different Heel Heights on Heel Pressure Distribution for Calcaneal Spur Patients During Standing: Finite Element Analysis
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Effects of Different Heel Heights on Heel Pressure Distribution for Calcaneal Spur Patients During Standing: Finite Element Analysis

机译:不同鞋跟高度对静止患者鞋跟压力分布的影响:有限元分析

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This study was performed to investigate heel height shoe for every patient which peak pressure in the heel area is lower than pain minimum compressive pressure. Heel heights of the shoes are standardized as 0-4 cm. Sixteen patients with symptomatic heel spur participated in this study. Peak pressure due to its own weight is estimated using FEM and compared with the results of measurement using FSR (force sensing resistor). As heel height increased, peak pressure in heel region in the heel height 2 cm, 3 cm and 4 cm are larger 3.86% and smaller 5.04% and 22.11% respectively compared to the smallest pain compressive pressure. These peak pressures are significantly higher than the average pressure in CH (center of heel) measurement results due to the difference in the location of peak pressure to CH at average of 8.64 ± 1.44 mm.
机译:进行该研究以研究鞋跟区域峰值压力低于止痛最小抗压压力的患者的鞋跟高度鞋。 鞋跟高度标准化为0-4厘米。 16名患有症状鞋跟刺激的患者参与了这项研究。 使用FEM估计其自身重量引起的峰值压力,并与使用FSR(力传感电阻)的测量结果相比。 随着脚后跟高度增加,与最小疼痛压缩压力相比,脚后跟高度2厘米,3厘米和4厘米的脚后跟地区的峰值压力分别为3.86%,比5.04%和22.11%。 由于峰值压力的位置与平均为8.64±1.44mm,这些峰值压力显着高于CH(鞋跟中心)测量结果的平均压力。

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