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Optimization of Contrast-to-Tissue Ratio by Adaptation of Transmitted Ternary Signal in Ultrasound Pulse Inversion Imaging

机译:超声脉冲反转成像中透射三元信号的自适应优化组织对比度

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摘要

Ultrasound contrast imaging has provided more accurate medical diagnoses thanks to the development of innovating modalities like the pulse inversion imaging. However, this latter modality that improves the contrast-to-tissue ratio (CTR) is not optimal, since the frequency is manually chosen jointly with the probe. However, an optimal choice of this command is possible, but it requires precise information about the transducer and the medium which can be experimentally difficult to obtain, even inaccessible. It turns out that the optimization can become more complex by taking into account the kind of generators, since the generators of electrical signals in a conventional ultrasound scanner can be unipolar, bipolar, or tripolar. Our aim was to seek the ternary command which maximized the CTR. By combining a genetic algorithm and a closed loop, the system automatically proposed the optimal ternary command. In simulation, the gain compared with the usual ternary signal could reach about 3.9 dB. Another interesting finding was that, in contrast to what is generally accepted, the optimal command was not a fixed-frequency signal but had harmonic components.
机译:由于诸如脉冲反转成像之类的创新方式的发展,超声造影成像已提供了更准确的医学诊断。但是,后一种提高对比度和组织比率(CTR)的方式并不是最佳的,因为频率是与探头一起手​​动选择的。但是,可以对该命令进行最佳选择,但是它需要有关换能器和介质的精确信息,而这些信息在实验上甚至很难获得,甚至很难获得。事实证明,考虑到发生器的类型,优化可能变得更加复杂,因为常规超声扫描仪中电信号的发生器可以是单极,双极或三极的。我们的目标是寻求使CTR最大化的三元命令。通过结合遗传算法和闭环,系统自动提出最佳三元指令。在仿真中,与通常的三进制信号相比,增益可以达到约3.9dB。另一个有趣的发现是,与通常接受的相反,最佳命令不是固定频率的信号,而是谐波分量。

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