论文代写:假肢结构

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07/07/2017

论文代写:假肢结构

设计了一个肘关节假肢的结构,并设计出了假肢的运动学和运动学能力。通过一个人的四肢收集的一些数据是不可能复制的。物体的动态、温度、纹理和形状都没有被感觉到,除非同样的东西是不能看的。同样的情况也出现在肘关节假肢上。肘关节假体主要与一种敲击方法相联系,这样,一个人戴着相关的肘部假肢就能感受到不同的生活特征和属性。每一个肘关节假肢都与一个重13和3盎司的钩子有关。然而,在肘部修复的每个钩子的平均重量大约是7盎司。肘部的整体重量也会有很大的变化,以适应不同的截肢者的要求。在尺寸方面,肘关节的每个组成部分通常比各自的对手要小。为了使假肢的每一个部件都能紧密配合,每一个部件都是在尺寸范围内特别设计的(派克,2009)。同样允许肘部假肢适合不同种类和形状的截肢者。

论文代写:假肢结构

A structure of an elbow prosthesis is constructed and designed such that its matches the kinetic and kinematic capabilities of the segments of limb. Some of the data collected through an individual’s limbs are not possible to duplicate. The dynamics, temperature, texture, and shape of the objects has not been felt, unless the same is not watchable. The same situation is with the elbow prosthetics. Elbow prosthesis is primarily associated with a method of tapping so that the different life characteristics and attributes can be felt by an individual wearing the concerned elbow prosthetics (Gottschalk et al., 2009). Each of the elbow prosthesis is associated with a hooks of weight 13 and 3 ounces. However, the average weight of each of the hooks used within the elbow prosthesis is around 7 ounces. The overall weight of the elbow also varies greatly so as to meet the different amputee specifications. In the context of dimensions, each component of the elbow prosthesis is generally smaller than their respective counterparts anthropomorphically. To permit a tight fitting of each of the component of prosthesis, each component is specifically designed in the context of dimensions (Pike, 2009). The same allows elbow prosthesis to fit different kinds and shapes of amputees.

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