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The effect of the phase of transmission on contrast agent echoes

机译:传输阶段对造影剂回声的影响

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Ultrasound contrast agents consist of a gas bubble, encapsulated by a shell for stabilization. The shell dampens the fluctuations in the bubble radius when insonified. The detection of contrast microbubbles during a medical examination can indicate whether a region is perfused with blood. Here, the authors consider the effect of the phase of sonification signal on the backscatter by the bubble echo. By transmitting two short pulses of ultrasound with opposite phases, the authors demonstrate that a unique pair of echoes can be generated by a single microbubble, and that the properties of these echoes may be useful in the discrimination of bubble and tissue echoes. Specifically, the significant echo amplitude begins coincident with each transmitted rarefactional half-cycle, and the mean frequency of this echo depends on the transmitted phase. When rarefaction is transmitted first for a 2.25 MHz signal, the mean frequency is 0.8 MHz higher for an albumin-shelled bubble and 0.9 MHz higher for a lipid-shelled bubble. The experimental results agree with the predictions of the Gilmore-Akulichev equation.
机译:超声造影剂由气泡包裹,并被外壳封装以稳定。声波消失时,壳会减弱气泡半径的波动。在医学检查期间检测到的对比微气泡可以指示该区域是否充满了血液。在这里,作者考虑了气泡回声对超声信号的相位对反向散射的影响。通过发射两个相位相反的短脉冲超声,作者证明了单个微气泡可以产生一对独特的回波,并且这些回波的特性可能对区分气泡和组织回波很有用。具体来说,有效回波幅度开始于每个发射的稀疏半周期,并且该回波的平均频率取决于发射的相位。当首先为2.25 MHz信号传输稀疏度时,带白蛋白的气泡的平均频率高0.8 MHz,带脂质的气泡的平均频率高0.9 MHz。实验结果与Gilmore-Akulichev方程的预测吻合。

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