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Transmit Frequency Optimization for Ultrasound Constrast Agent Response

机译:超声造影剂响应传输频率优化

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Introduction: Since the introduction of ultrasound (US) contrast imaging, the imaging systems use a fixed emitting frequency. However it is known that the insonified medium 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 acoustic contrast. Two algorithms have been proposed to find an US excitation for which the frequency was optimal with microbubbles. Methods and Materials: Simulations were carried out for encapsulated microbubbles of 2 microns by considering the modified Rayleigh-Plesset equation for 2 MHz transmit frequency and for various pressure levels (20 kPa up to 420kPa). In vitro experiments were carried out using a transducer operating at 2 MHz and using a programmable waveform generator. Contrast agent was then injected into a small container filled with water. Results and discussions: We show through simulations and in vitro experiments that our adaptive imaging technique gives: 1) in case of simulations, a gain of acoustic contrast which can reach 9 dB compared to the traditional technique without optimization and 2) for in vitro experiments, a gain which can reach 18 dB. There is a non negligible discrepancy between simulations and experiments. These differences are certainly due to the fact that our simulations do not take into account the diffraction and nonlinear propagation effects. Further optimizations are underway.
机译:简介:由于超声(US)对比度成像的引入,成像系统使用固定发射频率。然而,已知杀介质是时变的,因此预期适应的时变激励。我们建议一种自适应成像技术,其选择最大化声学对比度的最佳发射频率。已经提出了两种算法来找到美国频率与微泡的频率最佳的激励。方法和材料:通过考虑2MHz发射频率的改进的瑞利 - Plesset方程和各种压力水平(高达420kPa),对2微米的封装微泡来进行2微米的封装微泡的模拟。在体外实验中使用以2MHz操作的换能器进行,并使用可编程波形发生器。然后将造影剂注射到充满水的小容器中。结果与讨论:我们通过模拟和体外实验表明我们的自适应成像技术给出:1)在模拟的情况下,声学对比度可以达到9 dB的增益,而没有优化的传统技术,2)用于体外实验,可以达到18 dB的增益。模拟与实验之间存在不可忽略的差异。这些差异肯定是因为我们的模拟不考虑衍射和非线性传播效应。进一步优化正在进行中。

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