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Temporal evolution of fast and slow waves during propagation through bovine cancellous bone in vitro

机译:体外通过牛松质骨传播时快,慢波的时间演变

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Fast and slow waves were detected in a bovine cancellous bone sample for thicknesses ranging from 7 to 12 mm using bandlimited deconvolution and the modified least-squares Prony's method with curve fitting (MLSP+CF). Bandlimited deconvolution consistently isolated two waves with linear-with-frequency attenuation coefficients, as evidenced by high correlation coefficients between attenuation coefficient and frequency: 0.997 ± 0.002 (fast wave) and 0.986 ± 0.013 (slow wave) (mean ± standard deviation). Average root-mean-squared (RMS) differences between the two algorithms for phase velocities were 5 m/s (fast wave, 350 kHz) and 13 m/s (slow wave, 750 kHz). Average RMS differences for signal loss were 1.6 dB (fast wave, 350 kHz) and 0.4 dB (slow wave, 750 kHz). Phase velocities for thickness = 10 mm were 1726 m/s (fast wave, 350 kHz) and 1455 m/s (slow wave, 750 kHz). Results show support for the model of two waves with linear-with frequency attenuation, successful isolation of fast and slow waves, good agreement between bandlimited deconvolution and MLSP+CF as well as with a Bayesian algorithm, and potential variations of fast and/or slow wave properties with bone sample thickness.
机译:使用带限反褶积和改进的最小二乘Prony曲线拟合(MLSP + CF)方法,在牛松质骨样品中检测到了7至12 mm厚度的快波和慢波。带限解卷积始终隔离两个具有频率线性衰减系数的波,这由衰减系数和频率之间的高相关系数证明:0.997±0.002(快波)和0.986±0.013(慢波)(均值±标准差)。两种算法的相速度的平均均方根(RMS)差为5 m / s(快波,350 kHz)和13 m / s(慢波,750 kHz)。信号损耗的平均RMS差为1.6 dB(快波,350 kHz)和0.4 dB(慢波,750 kHz)。厚度= 10 mm的相速度为1726 m / s(快波,350 kHz)和1455 m / s(慢波,750 kHz)。结果表明支持具有频率衰减线性的两波模型,成功隔离快波和慢波,带限解卷积和MLSP + CF以及贝叶斯算法之间的良好一致性以及快慢和/或慢速的潜在变化波特性与骨骼样本的厚度。

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