Potential Evaluation of Electro Mechano Gram (EMG) for Osteoporosis Detection

shashank srivastava, S. Prakash, S. Bhalla, A. Madan, Sunil Sharma, H. Chhabra, Jitesh Manghwani
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Abstract

Good health of bones is of the utmost importance to human beings. Smart materials like lead zirconate titanate (PZT) patches are small in size and carry less weight, which makes them most apt for biomedical structural health monitoring (BSHM). In the past, focus on the development of low-cost non-invasive techniques for real-time monitoring of critical bones has been undertaken as an alternative to current diagnosis techniques such as dual x-ray absorptiometry (DEXA), which is not portable and emits radiations. This paper presents a study to evaluate a previously developed non-bonded piezo sensor (NBPS)-based diagnostic technique for non-invasive detection of osteoporosis, in the framework of the electro-mechanical impedance (EMI) technique. As part of the study, the experimental trials in the paper are performed for comparing DEXA and bone electro-mechano gram (BEMG) on healthy subjects as well as those with osteoporosis. It was found that BEMG identified structural system for healthy and osteoporotic subjects were quite different leading to a new technique to identify osteoporosis.
肌电图(EMG)对骨质疏松症检测的潜在评价
骨骼的健康对人类至关重要。像锆钛酸铅(PZT)贴片这样的智能材料体积小,重量轻,这使得它们最适合用于生物医学结构健康监测(BSHM)。过去,人们一直致力于开发低成本、无创的关键骨骼实时监测技术,以替代当前的诊断技术,如双x射线吸收仪(DEXA),后者不便携,而且会发出辐射。本文在机电阻抗(EMI)技术的框架下,对先前开发的基于非键合压电传感器(NBPS)的骨质疏松症无创检测诊断技术进行了研究。作为研究的一部分,本文进行了比较健康人与骨质疏松症患者DEXA和骨机电图(BEMG)的实验试验。结果表明,BEMG对健康和骨质疏松患者的结构系统识别存在较大差异,为骨质疏松症的识别提供了一种新的技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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