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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Numerical analysis of ultrasound backscattered waves in cancellous bone using a finite-difference time-domain method: isolation of the backscattered waves from various ranges of bone depths
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Numerical analysis of ultrasound backscattered waves in cancellous bone using a finite-difference time-domain method: isolation of the backscattered waves from various ranges of bone depths

机译:时域有限差分法对松质骨中超声反向散射波的数值分析:从不同骨深度范围隔离反向散射波

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Using a finite-difference time-domain method, ultrasound backscattered waves inside cancellous bone were numerically analyzed to investigate the backscatter mechanism. Two bone models with different thicknesses were modeled with artificial absorbing layers positioned at the back surfaces of the model, and an ultrasound pulse wave was transmitted toward the front surface. By calculating the difference between the simulated waveforms obtained using the two bone models, the backscattered waves from a limited range of depths in cancellous bone could be isolated. The results showed that the fast and slow longitudinal waves, which have previously been observed only in the ultrasound waveform transmitted through the bone, could be distinguished in the backscattered waveform from a deeper bone depth when transmitting the ultrasound wave parallel to the main orientation of the trabecular network. The amplitudes of the fast and slow backscattered waves were more closely correlated with the bone porosity [R2 = 0.84 and 0.66 (p
机译:使用时域有限差分法,对松质骨内部的超声反向散射波进行了数值分析,以研究其反向散射机理。使用位于模型背面的人造吸收层对两个具有不同厚度的骨骼模型进行建模,然后向正面发射超声波脉冲。通过计算使用两个骨骼模型获得的模拟波形之间的差异,可以隔离来自松质骨骼中有限深度范围的反向散射波。结果表明,以前仅在通过骨骼传输的超声波波形中观察到的快,慢纵波,在平行于骨骼的主要方向传输超声波时,可以在后向散射波形中与较深的骨骼深度区分开。小梁网络。快速和慢速反向散射波的振幅与骨孔隙率更紧密相关[R2 = 0.84和0.66(p

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