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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Hydrophone Spatial Averaging Correction for Acoustic Exposure Measurements From Arrays—Part II: Validation for ARFI and Pulsed Doppler Waveforms
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Hydrophone Spatial Averaging Correction for Acoustic Exposure Measurements From Arrays—Part II: Validation for ARFI and Pulsed Doppler Waveforms

机译:来自阵列的声学曝光测量的水听筒空间平均校正 - ARFI和脉冲多普勒波形的验证

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This article reports the experimental validation of a method for correcting underestimates of peak compressional pressure (p(c)) , peak rarefactional pressure (p(r)), and pulse intensity integral (pii) due to hydrophone spatial averaging effects that occur during output measurement of clinical linear and phased arrays. Pressure parameters (p(c), p(r), and pii), which are used to compute acoustic exposure safety indexes, such as mechanical index (MI) and thermal index (TI), are often not corrected for spatial averaging because a standardized method for doing so does not exist for linear and phased arrays. In a companion article (Part I), a novel, analytic, inverse-filter method was derived to correct for spatial averaging for linear or nonlinear pressure waves from linear and phased arrays. In the present article (Part II), the inverse filter is validated on measurements of acoustic radiation force impulse (ARFI) and pulsed Doppler waveforms. Empirical formulas are provided to enable researchers to predict and correct hydrophone spatial averaging errors for membrane-hydrophone-based acoustic output measurements. For example, for a 400-mu m membrane hydrophone, inverse filtering reduced errors (means +/- standard errors for 15 linear array/hydrophone pairs) from about 34% (p(c)), 22% (p(r)), and 45% (pii) down to within 5% for all three parameters. Inverse filtering for spatial averaging effects significantly improves the accuracy of estimates of acoustic pressure parameters for ARFI and pulsed Doppler signals.
机译:本文报告了校正峰值压力低估(P(C)),峰值稀释压力(P(R))和脉冲强度积分(PII)的实验验证,由于输出期间发生的流水声空间平均效应测量临床线性和相控阵。用于计算声学曝光安全指标的压力参数(P(c),p(r)和pii)通常不会校正空间平均值,例如机械指数(mi)和热折射率(ti),因为a用于线性和相控阵的标准化方法不存在。在伴侣文章(第I部分)中,推导出一种新颖的分析,反滤波方法,以校正来自线性和相控阵列的线性或非线性压力的空间平均。在本文(第二部分)中,逆滤波器在测量声辐射力脉冲(ARFI)和脉冲多普勒波形上验证。提供了经验公式,以使研究人员能够预测和纠正基于膜 - 水上的声学输出测量的水上空间平均误差。例如,对于400μmM膜水电器,逆滤波减少误差(平均+/-标准误差为15个线性阵列/水电器对),约34%(p(c)),22%(p(r))所有三个参数的45%(PII)下降到5%以内。用于空间平均效果的逆滤波显着提高了ARFI和脉冲多普勒信号的声压参数估计的准确性。

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