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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Amplitude-dependent losses in ultrasound exposure measurement
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Amplitude-dependent losses in ultrasound exposure measurement

机译:超声暴露测量中与幅度有关的损耗

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Energy losses resulting from the nonlinear propagation of ultrasonic pulses in water have been measured using a polyvinylidene difluoride membrane hydrophone and a radiation-force balance. The focused ultrasonic transducers used were of low focal gain operating at source intensities and frequencies typical of those used in medical diagnostic applications. Energy transfer into harmonic components has been quantified by hydrophone measurements at the focus. At values of shock parameter sigma < pi /2, total loss of intensity was observed, with the greatest loss reaching 2.75 dB of the intensity predicted by linear extrapolation from low-amplitude measurements. A similar but smaller-magnitude reduction in the radiation force measured by a force balance was observed. These results are related to ranges of acoustic parameters obtained from surveys on clinical equipment. It is concluded that a significant majority of contemporary clinical scanners can generate ultrasonic pulses which will lose energy during transmission through water due to amplitude-dependent nonlinear losses, and that it is necessary to consider these, and other nonlinear phenomena, when predicting exposure conditions in vivo.
机译:已经使用聚偏二氟乙烯膜水听器和辐射力平衡测量了超声脉冲在水中非线性传播导致的能量损失。所使用的聚焦超声换能器具有低聚焦增益,其工作在医学诊断应用中典型的源强度和频率下。通过水听器的测量,已将能量转移到谐波分量中进行了量化。在冲击参数sigma i / 2的值处,观察到强度的总损失,最大损失达到了低振幅测量中线性外推法预测的强度的2.75 dB。观察到通过力平衡测得的辐射力类似但幅度较小。这些结果与从临床设备调查获得的声学参数范围有关。结论是,当代大多数临床扫描仪都会产生超声波脉冲,由于振幅相关的非线性损耗,超声波脉冲在水中传输时会损失能量,因此在预测人体的暴露条件时有必要考虑这些以及其他非线性现象。体内。

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