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Improvement of the power response in contrast imaging with transmit frequency optimization

机译:通过发射频率优化改善对比度成像中的功率响应

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Conventionnal ultrasound contrast imaging systems use a fixed transmit frequency. However it is known that the insonified medium (microbubbles) is time-varying and therefore an adapted time-varying excitation is expected. We suggest an adaptive imaging technique which selects the optimal transmit frequency that maximizes the contrast tissue ratio (CTR). Two algorithms have been proposed to find an US excitation for which the frequency has been optimal with microbubbles. Simulations were carried out for encapsulated microbubbles of 2 ¿m-radius by considering the modified Rayleigh-Plesset equation for a 2.25 MHz transmitted frequency and for various pressure levels (20 kPa up to 420 kPa). In vitro experiments have been carried out using a 2.25 MHz transducer and using a programmable waveform generator. Responses of a 1/2000 blood mimicking fluid-diluted solution of Sonovue¿ were measured by a 3.5 MHz transducer. We show through simulations that our adaptive imaging technique allows to reduce the transmit maximal pressure. As for in vitro experiments the CTR can reach 10 dB. By proposing a close loop system whose frequency adapts itself with the perfused media, throughout the examination, the optimization system adapt itself to the remaining bubbles population thus allowing an increase of the 30% examination duration.
机译:公平的超声对比度成像系统使用固定发射频率。然而,已知杀介质(微泡)是时变的,因此预期适应的时变激励。我们建议一种自适应成像技术,其选择最大化对比组织比(CTR)的最佳发射频率。已经提出了两种算法,以找到频率与微泡的频率最佳的激励。通过考虑到2.25MHz透射频率的改进的瑞利 - Plesset方程和各种压力水平(20kPa最多420kPa),对2×,λm-半径的封装微泡进行模拟。使用2.25MHz传感器并使用可编程波形发生器进行体外实验。通过3.5MHz传感器测量SonovueÃ的1/2000血液模拟液体稀释溶液的反应。我们通过模拟显示我们的自适应成像技术允许减少发射最大压力。至于体外实验,CTR可以达到10 dB。通过提出频率与灌注介质的频率适应频率的闭环系统,整个检查,优化系统适应剩余的气泡种群,从而增加30%的检查持续时间。

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