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Ex-vivo measurements of quantitative ultrasound and micro-CT parameters on intact human femoral heads

机译:完整人体股骨头的定量超声和微CT参数的离体测量

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The purpose of this work was to study the relationships between quantitative ultrasound (QUS) parameters and the microstructure properties of human proximal femur samples. QUS data acquisition was achieved by means of a custom-developed experimental set-up, which allowed the insonification of excised femoral heads along 30 different directions, each time including both the trabecular region and the cortical layer in their physiologic morphological configuration. Two QUS parameters, Integrated Reflection Coefficient (IRC) and Apparent Integrated Backscatter (AIB), were measured by means of both single-element transducers at two different frequencies (2.25 MHz and 3.5 MHz) and a clinically-available 128-element convex probe. The obtained data were compared with local structural properties of the bone samples as quantified by high-resolution micro-computed tomography (micro-CT). The corresponding results showed a strong correlation between trabecular bone volume fraction and AIB (|r| up to 0.81) and an appreciable linear correlation between cortical bone density and IRC (|r| up to 0.59). QUS parameter values measured by single-element transducers were optimally reproduced when the clinically-available probe was employed. This provides the proposed approach with an interesting potential for a prompt clinical translation as a possible new tool for osteoporosis diagnosis, especially considering that the insonification of the whole femoral head was performed in its physiological shape with all its components (cartilage, cortical layer, trabecular region).
机译:这项工作的目的是研究定量超声(QUS)参数与人类近端股骨样品微观结构特性之间的关系。 QUS数据采集是通过定制开发的实验装置实现的,该装置允许沿30个不同方向对切除的股骨头进行声像化,每次包括小梁区域和皮质层的生理形态。两个QUS参数,即综合反射系数(IRC)和视在综合背向散射(AIB),都是通过两个不同频率(2.25 MHz和3.5 MHz)的单元素换能器和临床上可用的128元素凸探头进行测量的。将获得的数据与通过高分辨率微计算机断层扫描(micro-CT)量化的骨样品的局部结构特性进行比较。相应的结果表明,小梁骨体积分数与AIB之间有很强的相关性(| r |最高为0.81),而皮质骨密度与IRC之间存在明显的线性相关性(| r |最高为0.59)。当使用临床上可用的探头时,可以最佳地重现由单元素换能器测量的QUS参数值。这为提出的方法提供了令人感兴趣的潜力,可作为一种快速的临床翻译工具,作为诊断骨质疏松症的一种可能的新工具,尤其是考虑到整个股骨头的声化是在生理形状及其所有组成部分(软骨,皮质层,小梁的区域)。

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