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Reflection of backscattered fast and slow waves on bone porosity using 2D simulation

机译:使用2D模拟在骨骼孔隙上反射快速散射和慢速散射波

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Based on analysis of attenuation and velocity of ultrasound wave, the bone quality can be estimated. Despite that, the bone quality assessment of quantitative ultrasound still not match with X-ray based densitometry measurement. Taking account fast and slow wave parameter is believed to improve bone quality assessment using ultrasound. However, the current technique successfully measured fast and slow wave is through transmission, which is limited to the certain part of the skeletal site. Based on simulation studies recently, pulse echo measurement technique is proposed to solve the problem by investigating the correlation between fast and slow wave observed from backscattered waves with bone porosity. The 2D simulation is conducted toward 18 bone models with 9 models with parallel orientation and 9 models with perpendicular orientation. By calculating the difference between the simulated waveforms obtained using the two bone models, the backscattered waves with various depths can be isolated from overall reflected waves. Fast and slow wave will be identified in time domain from 4 difference depth of backscattered waves obtained. At the depth of 2.5 mm to 3.5 mm of backscattered wave, two waves which are might be fast and slow waves can be observed in the time domain of the parallel orientation model at the time between 13 μs to 16 μs compared to the perpendicular orientation model. The correlation between fast wave amplitude with porosity shows a clear negative correlation (R2 = 0.77) compared to slow wave amplitude. The results also have a good agreement with previous research. Using 2D simulation, the backscattered wave can be isolated and a fast and slow wave was successfully observed in time domain. Hence, focusing on fast wave parameter for pulse echoes measurement might provide an improvement in bone quality assessments.
机译:基于对超声波的衰减和速度的分析,可以估算出骨骼质量。尽管如此,定量超声的骨质量评估仍然不能与基于X射线的光密度测量法相匹配。据信,考虑快速和慢速波参数可以改善使用超声的骨质量评估。但是,当前成功测量快波和慢波的技术是通过传输,这仅限于骨骼部位的特定部分。在最近的模拟研究的基础上,提出了一种脉冲回波测量技术,该技术通过研究从具有骨孔隙的反向散射波观察到的快波和慢波之间的相关性来解决该问题。对18个骨骼模型进行2D模拟,其中9个模型具有平行方向,而9个模型具有垂直方向。通过计算使用两个骨骼模型获得的模拟波形之间的差异,可以将具有各种深度的反向散射波与总反射波隔离。从获得的反向散射波的4个差异深度中,将在时域中识别快波和慢波。在2.5mm至3.5mm的反向散射波深度处,与垂直取向模型相比,在平行取向模型的时域中13μs到16μs之间的时间可以观察到两个可能是快波又是慢波的波。 。与慢波振幅相比,快波振幅与孔隙度之间的相关性显示出明显的负相关性(R 2 = 0.77)。结果也与以前的研究有很好的一致性。使用2D模拟,可以隔离反向散射波,并且可以在时域中成功观察到快波和慢波。因此,专注于脉冲回波测量的快速波参数可能会改善骨质量评估。

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