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A method for the determination of the inertial cavitation threshold of ultrasound contrast agents

机译:一种确定超声造影剂惯性空化阈值的方法

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Ultrasound contrast agents consist of microbubbles with diameters in the micron range. In recent developments, targeted drug delivery is effectuated using microbubbles. Microbubbles may be destroyed by inertial cavitation if the insonification amplitude is chosen high enough. The minimum threshold for inertial cavitation of a microbubble population is thus an important characteristic of an ultrasound contrast agent. This article proposes a method for the determination of ultrasound contrast agent destruction by inertial cavitation. Detection is implemented by transmission of a destruction and a probing pulse with a fixed time delay. Using an expectation maximization algorithm, modulated Gaussian pulses are fitted to the received waveform. By consideration of the time offset between each pulse, the responses to the individual pulses can be seperated and destroyed bubbles can be counted. A destruction curve for the contrast agent Definity was recorded at an insonification frequency of 2.25 MHz. At a peak negative pressure of 1.11 MPa, 18.81% of the recorded population was destroyed.
机译:超声造影剂由微泡组成,微泡在微米范围内直径。在最近的发展中,使用微泡来实现靶向药物递送。如果在足够高的情况下,可以通过惯性空化破坏微泡。因此,微泡群的惯性空化的最小阈值是超声造影剂的重要特征。本文提出了一种通过惯性空化确定超声造影剂破坏的方法。通过通过固定时间延迟传输破坏和探测脉冲来实现检测。使用期望最大化算法,调制的高斯脉冲装配到接收的波形。通过考虑每个脉冲之间的时间偏移,可以分离对各个脉冲的响应并计算破坏的气泡。造影剂定义的破坏曲线以2.25MHz的奇妙频率记录。在1.11MPa的峰值负压下,18.81%的记录人口被摧毁。

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