首页> 外文期刊>Physics in medicine and biology. >Prediction of density and mechanical properties of human trabecular bone in vitro by using ultrasound transmission and backscattering measurements at 0.2-6.7 MHz frequency range.
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Prediction of density and mechanical properties of human trabecular bone in vitro by using ultrasound transmission and backscattering measurements at 0.2-6.7 MHz frequency range.

机译:通过在0.2-6.7 MHz频率范围内使用超声传输和反向散射测量来预测人小梁骨的密度和力学性能。

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The ultrasound (US) backscattering method has been introduced as an alternative for the through-transmission measurement of sound attenuation and speed in diagnosis of osteoporosis. Both attenuation and backscattering depend strongly on the US frequency. In this study, 20 human trabecular bone samples were measured in transmission and pulse-echo geometry in vitro. The aim of the study was to find the most sensitive frequency range for the quantitative ultrasound (QUS) analyses. Normalized broadband US attenuation (nBUA), speed of sound (SOS), broadband US backscatter (BUB) and integrated reflection coefficient (IRC) were determined for each sample. The samples were spatially scanned with five pairs of US transducers covering a frequency range of 0.2-6.7 MHz. Furthermore, mechanical properties and density of the same samples were determined. At all frequencies, SOS, BUB and IRC showed statistically significant linear correlations with the mechanical properties or density of human trabecular bone (0.51
机译:超声(US)反向散射方法已被引入,作为透声测量骨质疏松症诊断中声音衰减和速度的替代方法。衰减和反向散射都很大程度上取决于美国频率。在这项研究中,在体外测量了20个人骨小梁的透射和回波几何形状。该研究的目的是为定量超声(QUS)分析找到最敏感的频率范围。为每个样品确定归一化宽带美国衰减(nBUA),声速(SOS),宽带美国反向散射(BUB)和综合反射系数(IRC)。用五对覆盖频率范围为0.2-6.7 MHz的US传感器对样品进行空间扫描。此外,确定了相同样品的机械性能和密度。在所有频率下,SOS,BUB和IRC与人的小梁骨的机械性能或密度在统计学上均具有显着的线性相关性(分别为0.51

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