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Impact of a multi-frequency sequence of measurements on first arriving signal velocity on a bone plate model

机译:多频率测量序列对骨板模型上首次到达信号速度的影响

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In several clinical studies, the velocity of the first arriving signal (FAS) measured in axial transmission on various skeletal sites was shown to be a robust ultrasound parameter able to discriminate a population of fractured subjects from healthy subjects. The FAS velocity was measured from time marker (extremum, zero crossing...) and the excitation signal was usually a short impulse with a large frequency bandwidth, allowing a single FAS velocity per bone site. In addition, previous numerical models exhibited variation of the FAS velocity as a function of thickness-to-wavelength ratio with a varying sensitivity to structural and elastic properties of bone. Therefore, a multi-frequency sequence of measurements for a unique bone site may enhance the diagnostic capabilities of the FAS velocities and potentially participate to bone characterization, i.e. to recover structural and/or elastic bone properties from a set of experimental FAS velocities for the same bone site. We report here on predictions of the FAS velocity when excitation frequency varies while bone thickness and material are kept fixed.
机译:在一些临床研究中,在各个骨骼部位的轴向传输中测得的第一个到达信号(FAS)的速度被证明是一个可靠的超声参数,能够将一群破裂的受试者与健康的受试者区分开。 FAS速度是通过时间标记(极值,零交叉...)进行测量的,并且激励信号通常是短脉冲,具有较大的频率带宽,因此每个骨骼部位只有一个FAS速度。此外,以前的数值模型显示出FAS速度随厚度与波长之比的变化,并且对骨骼的结构和弹性特性具有不同的敏感性。因此,针对唯一骨骼部位的多频率测量序列可以增强FAS速度的诊断能力,并可能参与骨骼表征,即从一组相同的实验FAS速度中恢复结构和/或弹性骨骼特性骨头部位。我们在此报告当激发频率变化而骨骼厚度和材料保持固定时的FAS速度预测。

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