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Frequency Specific Ultrasound Attenuation Is Sensitive to Trabecular Bone Structure

机译:频率特异性超声衰减对小梁骨结构敏感

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摘要

This study investigated the efficacy of frequency modulated ultrasound attenuation in the assessment of the trabecular structural properties. Four frequency modulated signals were created to represent four frequency bands centered at 500 kHz, 900 kHz, 1.3 MHz and 1.7 MHz with the bandwidth of 400 kHz. Five one-centimeter trabecular cubes were harvested from fresh bovine distal femur. The cubes underwent four steps of demineralization process to expand the sample size to twenty five with the greater variations of the structural properties for the better correlation study. Pearson correlation study was performed between the ultrasound attenuation in four frequency bands and the trabecular structural properties. The results showed that correlations of frequency modulated ultrasound attenuation to the trabecular structural properties are dependent on frequency bands. The attenuation in proximal-distal orientation had the highest correlation to BV/TV (R2=0.73, p<0.001) and trabecular thickness (R2=0.50, p<0.001) at the frequency band centered at 1.7 MHz. It was equivalent in the four frequency bands in correlation to the trabecular number (average R2=0.80, p<0.001) and to the trabecular separation (average R2 =0.83, p<0.001). The attenuation in anterio-posterial orientation had the highest correlation to BV/TV (R2=0.80, p<0.001) and trabecular thickness (R2=0.71, p<0.001) at the frequency band centered at 1.3 MHz. The attenuation in the first frequency band was the most sensitive to the trabecular number (R2=0.71, p<0.001) and trabecular separation (R2=0.80, p<0.001). No significant correlation was observed for the attenuation in medial-lateral orientation across the four frequency bands.
机译:这项研究调查了频率调制超声衰减在评估小梁结构特性方面的功效。创建了四个调频信号,以代表以500 kHz,900 kHz,1.3 MHz和1.7 MHz为中心的四个频段,带宽为400 kHz。从新鲜的牛股骨远端收获五个五个一厘米的小梁立方体。多维数据集经历了去矿质过程的四个步骤,以将样本大小扩展到25个,并且结构特性的变化也更大,以便更好地进行相关性研究。在四个频段的超声衰减与小梁结构特性之间进行了皮尔逊相关研究。结果表明,调频超声衰减与骨小梁结构特性的相关性取决于频带。近端-远侧方向的衰减与BV / TV的相关性最高(R 2 = 0.73,p <0.001)和小梁厚度(R 2 = 0.50,p < 0.001)在以1.7 MHz为中心的频段上。在四个频段上,它与小梁数(平均R 2 = 0.80,p <0.001)和小梁间距(平均R 2 = 0.83)相关,p <0.001)。前后角方向的衰减与BV / TV的相关性最高(R 2 = 0.80,p <0.001)和小梁厚度(R 2 = 0.71,p < 0.001)在以1.3 MHz为中心的频段上。第一个频段的衰减对小梁数(R 2 = 0.71,p <0.001)和小梁间距(R 2 = 0.80,p < 0.001)。没有观察到在四个频带上的内侧-外侧方向的衰减有显着相关性。

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