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Vibration Analysis and Measurement in Knee Ankle Foot Orthosis for both Metal and Plastic KAFO Type

机译:金属和塑料KAFO型膝踝足矫形器的振动分析和测量

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A standard knee-ankle-foot orthosis (KAFO) is typically prescribed to support the limb during locomotion ,during which (KAFO) is used for people with isolated quadriceps weakness or paralysis. In this paper the measurement applied on girl undergoing palsy children in her left leg as a case study. The first pathological concern is of age, weight, length and the residual palsy limb of 30 years old, 59kg, 156 cm, and 76 cm respectively, while the second test done is on man suffering flexion knee and shorten left leg due to injection by a needle in a wrong position when he was a child. The pathological concern is of age, weight, length and the residual defect limb of 35years, 82kg, 172 cm, and 80 cm respectively. This work involves two major parts: the first of which is the experimental part to measure the ground reaction force for both healthy and intake legs. The interface pressure between leg and calf part is measured for twelve points covering the total KAFO surface area , while the vibration data (velocity, acceleration and frequency ) are measured at the last stage for the patient at different positions during the gait cycle. The second part is the numerical part during which stresses is calculated using ANSYS software for two cases ,the first one is calculating stresses due to IP loading condition , while the second is calculating stresses due to the harmonic and spectrum vibration type. The above procedures were used for two types of KAFO ,the first one is for metal-metal KAFO type and the second is for the plastic-metal KAFO type . The result shows that the GRF for the healthy person limb is greater than that of the intake person limb in about (17 %) while the healthy limb has GRF lesser than that of the intake limb for the same person in (2.2%) .The Maximum IP is recorded in the posterior regions in the thigh part with (51Kpa ) .The result shows that the maximum Vibration data is in the sensing position at the knee on (8.5 and 5.9)for acceleration and frequency respectively at knee region for the plastic-metal KAFO type . Using plastic-metal KAFO type also leads to reduce the vibration data on (6.4 % and 26% )for both acceleration and frequency respectively at thigh region.
机译:通常规定标准的膝踝足矫形器(KAFO)在运动过程中支撑四肢,在此期间(KAFO)用于股四头肌无力或瘫痪的人。在本文中,该测量适用于案例研究中的女孩,该女孩的左腿患有麻痹儿童。第一个病理问题是年龄,体重,长度和30岁分别为59kg,156 cm和76 cm的残余瘫痪肢体,而第二个测试是对因屈膝注射而屈膝并缩短左腿的男人进行的他小时候的针头位置不正确。病理因素分别为年龄35岁,体重82kg,身长172 cm和身长80 cm,体重,身长和残肢残缺。这项工作包括两个主要部分:第一部分是测量健康和摄入腿部地面反作用力的实验部分。在覆盖整个KAFO表面积的十二个点上测量腿和小腿之间的界面压力,而在步态周期中,在最后一个阶段在不同位置测量患者的振动数据(速度,加速度和频率)。第二部分是数值部分,在这两种情况下,使用ANSYS软件计算应力,第一部分是计算IP加载条件引起的应力,第二部分是计算谐波和频谱振动类型引起的应力。以上程序用于两种类型的KAFO,第一种用于金属-金属KAFO型,第二种用于塑料-金属KAFO型。结果显示,健康人肢体的GRF大约比摄入人肢体的GRF大(17%),而健康人肢体的GRF小于同一人的进食肢体的GRF(2.2%)。在大腿部位的后部区域以(51Kpa)记录最大IP,结果表明最大振动数据在塑料的膝盖区域的加速度和频率处分别在(8.5和5.9)处在膝盖的感测位置。金属KAFO型。使用塑性金属KAFO型还可以减少大腿区域的加速度和频率上的振动数据(分别为6.4%和26%)。

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