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首页> 外文期刊>Science, Measurement & Technology, IET >In-vitro study of human proximal femur microstructure: analysis of the relationship between micro-computed tomography data and quantitative ultrasound parameters
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In-vitro study of human proximal femur microstructure: analysis of the relationship between micro-computed tomography data and quantitative ultrasound parameters

机译:人体股骨近端显微结构的体外研究:显微计算机断层扫描数据与超声定量参数之间关系的分析

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The aim of this study was to investigate the relationships between selected quantitative ultrasound (QUS) parameters and human femur microstructure properties, as quantified by micro-computed tomography (micro-CT). The authors employed an innovative custom-designed experimental set-up, which allowed the insonification of each portion of an excised femoral head sample, simultaneously including trabecular region, cortical layer and cartilage in their physiologic morphological configuration. Thirty different, uniformly distributed, regions of interest were analysed for the calculation of apparent integrated backscatter (AIB), integrated reflection coefficient (IRC) and several micro-CT parameters. QUS data acquisitions were performed through both single-element ultrasound transducers at two different frequencies (2.25 and 3.5 MHz) and a clinically available 128-element echographic probe. Obtained results showed that AIB was strongly correlated with trabecular network properties (|| up to 0.80) and IRC had appreciable linear correlations with cortical bone density (|| up to 0.57). The agreement between single-element transducers and echographic probe, combined with the innovative approach of considering the entire femoral head in its physiological shape with all its components (cartilage, cortical layer, trabecular region), encourages the clinical translation of the proposed approach as a possible new method for early osteoporosis diagnosis.
机译:这项研究的目的是调查选定的定量超声(QUS)参数与人股骨微结构特性之间的关系,通过微计算机断层扫描(micro-CT)进行定量。作者采用了一种创新的定制设计实验装置,该装置可以对切除的股骨头样品的每个部分进行超声检查,同时以其生理形态学形态包括小梁区域,皮质层和软骨。分析了三十个不同的,均匀分布的感兴趣区域,用于计算视在积分背向散射(AIB),积分反射系数(IRC)和几个微CT参数。 QUS数据采集是通过两个不同频率(2.25和3.5 MHz)的单元素超声换能器和临床可用的128元素超声成像探头进行的。获得的结果表明,AIB与骨小梁的网络特性密切相关(||高达0.80),而IRC与皮质骨密度(||高达0.57)具有明显的线性相关性。单元素换能器和回波成像探头之间的协议,结合考虑到整个股骨头处于其生理形状及其所有组成部分(软骨,皮质层,小梁区域)的创新方法,鼓励了该方法的临床翻译。早期诊断骨质疏松症的新方法。

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