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Matching of artificial limb with residual human limb by capacitance measurement technique

机译:电容测量技术将假肢与残肢匹配

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Prosthetic amputee rehabilitation is a very common phenomenon in medical science. Artificial limb used as a substitution of a missing body part to restore its function is generally known as prosthesis. The most rudimentary requirement is to design the artificial limb such that it appears as natural as the missing body part in terms of functionality and comfort. A method of designing artificial limb is proposed after a detailed analysis of the existing prosthesis mechanisms, their evolution and drawbacks. The proposed technique presents a prosthetic replacement essentially with a complete negative impression of the residual limb and an exact matching customarily at the contact surface. The technique exploits the capability of measuring the capacitance in the range of picofarad (10 Farad) to acquire varying surface data of the residual limb for its exact matching with the artificial part. A micro-controller based capacitance measuring equipment is developed and it is applied to measure the unevenness of a surface. The accuracy is validated through image processing.
机译:假肢截肢康复是医学界非常普遍的现象。人造肢体用来代替缺失的身体部位以恢复其功能通常被称为假肢。最基本的要求是设计人造肢体,使其在功能和舒适性方面看起来与缺少的身体部位一样自然。在详细分析现有假体机制,其发展和缺陷之后,提出了一种设计假肢的方法。所提出的技术提出了一种假体置换术,基本上对残肢完全造成了负面印象,并且通常在接触表面上进行了精确匹配。该技术利用了在皮法拉(10法拉)范围内测量电容的能力,以获取残肢的变化表面数据,以使其与人工部件精确匹配。开发了基于微控制器的电容测量设备,并将其应用于测量表面的不平整度。通过图像处理验证准确性。

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