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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >A new transducer receive transfer function calibration method: application to microbubble backscattering cross-section measurements at high frequency
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A new transducer receive transfer function calibration method: application to microbubble backscattering cross-section measurements at high frequency

机译:一种新的传感器接收传递函数校准方法:应用于高频微泡背散射截面测量

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摘要

When comparing acoustic scattering experiments with theory, the relationship between the pressure generated by a scatterer at the surface of a transducer and the induced voltage must be known. Methods have been previously proposed to measure the receive transfer function that rely on several assumptions. A new, experimental method for measuring the acoustic response of a spherically-focused transducer, using a hydrophone at twice the focal distance, is proposed that requires a minimum number of assumptions and calculations. The receive transfer function of a spherically-focused, high-frequency transducer was calculated, and found to be within 10% of the receive transfer function calculated assuming reciprocity. Further, using the receive transfer function, the effective backscattering cross-section of bound microbubbles interrogated at 30 MHz was measured to be, on average, 65% of the geometric backscattering cross-section, with significant size-independent variability. These results give insight into selecting the optimal microbubble size distribution for linear microbubble imaging at high frequencies.
机译:当将声学散射实验与理论进行比较时,必须知道换能器表面的散射体产生的压力与感应电压之间的关系。先前已经提出了基于几种假设来测量接收传递函数的方法。提出了一种新的实验方法来测量球形聚焦换能器的声学响应,该方法使用了两倍于焦距的水听器,需要最少的假设和计算。计算了球形聚焦高频换能器的接收传递函数,发现它在假设互易的情况下在所计算的接收传递函数的10%以内。此外,使用接收传递函数,测得在30 MHz处被询问的结合微气泡的有效反向散射横截面平均为几何反向散射横截面的65%,并且具有与尺寸无关的显着可变性。这些结果为深入了解在线性高频微气泡成像中选择最佳微气泡尺寸分布提供了见识。

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