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Monitoring trabecular bone microdamage using a dynamic acousto-elastic testing method

机译:使用动态声弹测试方法监测小梁骨微损伤

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摘要

Dynamic acousto-elastic testing (DAET) is based on the coupling of a lowfrequency(LF) acoustic wave and high-frequency ultrasound (US) pulses (probing wave). Itwas developed to measure US viscoelastic and dissipative non-linearity in trabecular bone. It is well known that this complex biphasic medium contains microdamage, even when tissues are healthy. The purpose of the present study was to assess the sensitivity of DAET to monitor microdamage in human calcanei. Three protocols were therefore performed to investigate the regional heterogeneity of the calcaneus, the correlation between DAET measurements and microdamage revealed by histology, and DAET sensitivity to mechanically induced fatigue microdamage. The non-linear elastic parameter b was computed for all these protocols. The study demonstrated the presence of high viscoelastic and dissipative non-linearity only in the region of the calcaneus close to the anterior talocalcaneal articulation (region of high bone density). Protocols 1 and 2 also showed that most unsorted calcanei did not naturally exhibit high non-linearity, which is correlated with a low level of microcracks. Nevertheless, when microdamage was actually present, high levels of US non-linearity were always found, with characteristic non-linear signatures such as hysteresis and tension/compression asymmetry. Finally, protocol 3 demonstrated the high sensitivity of DAET measurement to fatigue-induced microdamage.
机译:动态声弹测试(DAET)基于低频(LF)声波和高频超声(US)脉冲(探测波)的耦合。它被开发用来测量小梁骨中的美国粘弹性和耗散非线性。众所周知,即使组织健康,这种复杂的双相介质也会产生微损伤。本研究的目的是评估DAET监测人calcanei中微损伤的敏感性。因此,执行了三个协议来研究跟骨的区域异质性,组织学揭示的DAET测量值与微损伤之间的相关性以及DAET对机械诱发的疲劳微损伤的敏感性。为所有这些协议计算了非线性弹性参数b。该研究表明,仅在跟骨靠近跟骨前can关节(高骨密度区域)的跟骨区域存在高粘弹性和耗散非线性。方案1和2还显示,大多数未分选的卡尔卡内自然不会表现出高非线性,这与低水平的微裂纹有关。然而,当实际存在微损伤时,总是会发现高水平的US非线性,并具有特征性的非线性特征,例如磁滞和张力/压缩不对称。最后,方案3证明了DAET测量对疲劳引起的微损伤的高度敏感性。

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