首页> 美国卫生研究院文献>The Journal of the Acoustical Society of America >Negative dispersion in bone: The role of interference in measurements of the apparent phase velocity of two temporally overlapping signals
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Negative dispersion in bone: The role of interference in measurements of the apparent phase velocity of two temporally overlapping signals

机译:骨骼中的负色散:干扰在测量两个时间重叠信号的视在相速度中的作用

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摘要

In this study the attenuation coefficient and dispersion (frequency dependence of phase velocity) are measured using a phase sensitive (piezoelectric) receiver in a phantom in which two temporally overlapping signals are detected, analogous to the fast and slow waves typically found in measurements of cancellous bone. The phantom consisted of a flat and parallel Plexiglas™ plate into which a step discontinuity was milled. The phase velocity and attenuation coefficient of the plate were measured using both broadband and narrowband data and were calculated using standard magnitude and phase spectroscopy techniques. The observed frequency dependence of the phase velocity and attenuation coefficient exhibit significant changes in their frequency dependences as the interrogating ultrasonic field is translated across the step discontinuity of the plate. Negative dispersion is observed at specific spatial locations of the plate at which the attenuation coefficient rises linearly with frequency, a behavior analogous to that of bone measurements reported in the literature. For all sites investigated, broadband and narrowband data (3–7 MHz) demonstrate excellent consistency. Evidence suggests that the interference between the two signals simultaneously reaching the phase sensitive piezoelectric receiver is responsible for this negative dispersion.
机译:在这项研究中,使用幻相中的相敏(压电)接收器测量衰减系数和色散(相速度的频率相关性),该体模中检测到两个时间上重叠的信号,类似于松散测量中通常发现的快波和慢波骨。体模由平坦且平行的Plexiglas™板组成,在该板上铣削了不连续的台阶。使用宽带和窄带数据测量板的相速度和衰减系数,并使用标准幅度和相谱技术进行计算。当询问超声场在板的台阶不连续处平移时,观察到的相速度和衰减系数的频率依赖性在其频率依赖性上显示出显着变化。在板的特定空间位置观察到负色散,在该位置上,衰减系数随频率线性增加,其行为类似于文献中报道的骨测量结果。对于所有调查的站点,宽带和窄带数据(3–7 MHz)都表现出出色的一致性。有证据表明,同时到达相敏压电接收器的两个信号之间的干扰是造成这种负色散的原因。

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