首页> 外文期刊>Communications in Numerical Methods in Engineering >Numerical evaluation of nonbonded piezo sensor for biomedical diagnostics using electromechanical impedance technique
【24h】

Numerical evaluation of nonbonded piezo sensor for biomedical diagnostics using electromechanical impedance technique

机译:机电阻抗技术用于生物医学诊断的非粘结压电传感器的数值评估

获取原文
获取原文并翻译 | 示例
           

摘要

Directly bonded piezo sensor, conventionally employed in the electromechanical impedance (EMI) technique, although a proven candidate for structural health monitoring, is severely constrained in its application in the biomedical field due to its bonding requirement. In contrast, nonbonded piezo sensor (NBPS) provides a viable platform to assess the condition of human bones, tissues, and other biomedical subjects using the EMI technique without inflicting pain or irritation to the skin. The name NBPS was coined to emphasize that there was no direct bonding between the PZT patch and the live subject; instead, the PZT patch was bonded to a supporting medium, which maintains the mechanical interaction between the PZT patch and the subject. However, there are several aspects in the analysis of NBPS configuration that cannot be addressed completely through experimental study due to measurement constraints, cost, and time. For example, experimentally changing the density of bone continuously to study the osteoporosis effect is a tedious task warranting large number of specimens. This paper presents a detailed parametric study based on finite element method covering condition monitoring of human bones using the NBPS configuration. It is for the first time that 3D analysis for specimen identification and damage detection in bones using NBPS has been carried out. In addition to the validation of the numerical model against the previously established experimental studies involving bones, quantification of the extent of damage and its localization has been investigated. The density changes due to osteoporosis in bones are comprehensively investigated by the NBPS including the quantification aspect of osteoporosis/damage. Definite acquisition of bone signature and detection of physiological changes in bones are achieved even with the presence of skin, muscle, and fat layers on the bone.
机译:尽管在结构健康监测方面已被证明是可行的选择,但通常用于机电阻抗(EMI)技术的直接键合压电传感器由于其键合要求而在生物医学领域的应用受到了严重限制。相反,非粘结压电传感器(NBPS)提供了一个可行的平台,可以使用EMI技术评估人体骨骼,组织和其他生物医学受试者的状况,而不会给皮肤造成疼痛或刺激。创造NBPS这个名字是为了强调PZT贴片与现场对象之间没有直接的联系;取而代之的是,将PZT贴片粘结到支持介质上,该介质保持了PZT贴片与受试者之间的机械相互作用。但是,由于测量限制,成本和时间,在NBPS配置分析中有几个方面无法通过实验研究完全解决。例如,通过实验不断地改变骨密度以研究骨质疏松作用是一项繁琐的任务,需要大量标本。本文提出了一种基于有限元方法的详细参数研究,该方法涵盖了使用NBPS配置监测人体骨骼的状态。首次进行了使用NBPS进行3D分析以识别骨骼中的标本和进行损伤检测。除了根据先前建立的涉及骨骼的实验研究对数值模型进行验证之外,还研究了损伤程度及其位置的量化。 NBPS全面研究了由骨质疏松症引起的密度变化,包括骨质疏松症/损伤的量化方面。即使骨骼上存在皮肤,肌肉和脂肪层,也可以实现骨骼特征的确定获取和骨骼生理变化的检测。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号