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首页> 外文期刊>Приборы и техника эксперимента >DEVELOPING A BIO-MECHANOTRONIC PROBING SYSTEM FOR ESTIMATING SOFT TISSUE YOUNG'S MODULUS IN VIVO
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DEVELOPING A BIO-MECHANOTRONIC PROBING SYSTEM FOR ESTIMATING SOFT TISSUE YOUNG'S MODULUS IN VIVO

机译:开发用于估算体内软组织杨氏模量的生物力学探测系统

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摘要

In many medical applications such as rehabilitation, clinical palpation, and manipulation of organs, it is important to characterize soft-tissue properties accurately. This paper presents a bio-mechatronic probing system that could be used for estimating soft tissue Young's modulus in vivo. The system employs an electromagnetic spatial displacement sensor. The accuracy and reliability of the system were investigated. In addition, the effect of indentation rate on the variation of the values of the measured effective Young's modulus was also studied. A series of elastomers with different Young's modulus (ranged from 13.08 to 36.19 kPa) were assessed with both the probing system and a Hounsfield material testing machine. Intra-individual and inter-individual variations of the system were tested by five independent operators. The probing system was applied to assess the effective Young's modulus of human body parts in vivo. Fifteen healthy female subjects with age of 22.5 ± 4.3 years old were included for the in vivo test. The system was shown to be highly accurate (R~2 = 0.995) in comparison with the results obtained by the mechanical testing machine and had good reliability (intra-individual variation = 5.43%, inter-individual variation = 5.99%). The average effective Young's modules of the region of umbilicus were 13.33 kPa and 10.71 kPa for two different sites, respectively. Based on the results obtained, it is believed that this probing system was an accurate and reliable tool for rapidly assessing the mechanical properties of human body tissues in vivo.
机译:在许多医学应用中,例如康复,临床触诊和器官操纵,准确表征软组织特性非常重要。本文提出了一种可用于估计体内软组织杨氏模量的生物机电探测系统。该系统采用电磁空间位移传感器。研究了系统的准确性和可靠性。此外,还研究了压痕率对测得的有效杨氏模量值变化的影响。使用探测系统和Hounsfield材料测试机评估了一系列具有不同杨氏模量(范围为13.08至36.19 kPa)的弹性体。该系统的个体内和个体间变异由五个独立的运营商进行了测试。该探测系统被用于评估体内人体部分的有效杨氏模量。体内试验包括15名22.5±4.3岁的健康女性受试者。与机械测试仪获得的结果相比,该系统具有很高的准确性(R〜2 = 0.995),并且具有良好的可靠性(个体内部差异= 5.43%,个体内部差异= 5.99%)。对于两个不同的部位,脐带区域的平均有效杨氏模量分别为13.33 kPa和10.71 kPa。基于获得的结果,相信该探测系统是用于快速评估体内人体组织的机械性能的准确和可靠的工具。

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