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A dual-frequency excitation technique for enhancing the sub-harmonic emission from encapsulated microbubbles.

机译:一种双频激励技术,用于增强封装微泡的次谐波发射。

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摘要

Sub-harmonic imaging using encapsulated microbubbles (EMs) improves the contrast of ultrasound imaging by taking advantage of increased contrast to the tissue signal. A dual-frequency excitation technique (DFET) is proposed for enhancing the sub-harmonic emission from EMs as compared with the conventional single frequency sinusoidal excitation technique (SFSET). This study includes theoretical simulation and in vitro experimental verification. A dual-frequency signal (2 and 4 MHz) is used to insonate EMs developed in our laboratory. Both theoretical and experimental studies indicate that the DFET may be able to improve the amplitude of the sub-harmonic component up to 13 dB over the SFSET. Increasing the value of the pulse repetition frequency or the number of cycles of ultrasound tone burst in the application of the DFET may increase the sub-harmonic emission. Furthermore, it is confirmed that the amplitude ratio of the second frequency (4 MHz) to the first frequency (2 MHz) and phase shift of the second frequency with respect to the first frequency also play an important role in sub-harmonic emission. A ratio of 0.5 and a phase shift around 180 degrees are found to be the optimum values.
机译:使用封装的微气泡(EM)的次谐波成像通过利用与组织信号增强的对比度来改善超声成像的对比度。与传统的单频正弦激励技术(SFSET)相比,提出了一种双频激励技术(DFET)以增强来自EM的亚谐波发射。这项研究包括理论模拟和体外实验验证。双频信号(2和4 MHz)用于使我们实验室开发的EM产生声波。理论和实验研究均表明,DFET可能能够将次谐波分量的幅度提高到SFSET之上的13 dB。在DFET的应用中,增加脉冲重复频率的值或超声音突发的周期数可能会增加次谐波发射。此外,已经证实,第二频率(4MHz)与第一频率(2MHz)的振幅比以及第二频率相对于第一频率的相移在次谐波发射中也起重要作用。 0.5的比率和大约180度的相移被发现是最佳值。

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