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Ultrasound-guided localized detection of cavitation during lithotripsy in pig kidney in vivo

机译:体内猪肾猪肾脏空化的超声引导局部检测

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It is supposed that inertial cavitation plays a significant role in tissue damage during extracorporeal shock wave lithotripsy (ESWL). In this work we attempted to detect cavitation in tissue. In vivo experiments with pigs were conducted in a Dornier HM3 electrohydraulic lithotripter. Kidney alignment was made using fluoroscopy and B-mode ultrasound. Cavitation was detected by a dual passive cavitation detection (DPCD) system consisting of two confocal spherical bowl PZT transducers (1.15MHz, focal length 10 cm, radius 10 cm). An ultrasound scanhead was placed between the transducers, and hyperechoic spots in the image indicated pockets of bubbles during ESWL. A coincidence-detection algorithm and the confocal transducers made it possible to localize cavitation to within a 4 mm diameter region. The signals from both the collecting system and kidney tissue were recorded. The targeting of the DPCD focus was confirmed by using the DPCD transducers as high intensity focused ultrasound (HIFU) sources at HIFU durations below the lesion formation threshold. In this HIFU regime, a bright spot appears in the B-mode image indicating the position of the DPCD focus. In this way we could confirm that refraction and scattering in tissue did not cause a misalignment. The tissue region interrogated was also marked with a lesion produced by HIFU. Clear cavitation signals were detected from the collecting system and from pools of blood that formed near the kidney capsule and weak signals were recorded from tissue during the ESWL treatment.
机译:假设惯性空化在体外冲击波型(ESWL)中的组织损伤中起着重要作用。在这项工作中,我们试图检测组织中的空化。在DORNIER HM3电液型碎石体中进行猪的体内实验。使用荧光检查和B模式超声进行肾比度。通过双无源空化检测(DPCD)系统由两个共焦球碗PZT换能器(1.15MHz,焦距10cm,半径10cm)组成的双被动空化检测(DPCD)系统检测到空化。将超声波扫描头放置在换能器之间,并且在ESWL期间图像中的图像中的高档斑点表示。一致检测算法和共焦换能器使得可以将空化定位在4mm直径区域内。记录来自收集系统和肾组织的信号。通过在低于病变形成阈值以下HIFU持续时间的高强度聚焦超声(HIFU)源的高强度聚焦超声(HIFU)源来确认DPCD重点的靶向。在这种HIFU制度中,在B模式图像中出现亮点,指示DPCD焦点的位置。通过这种方式,我们可以确认组织中的折射和散射不会引起未对准。询问的组织区域也标有HIFU产生的病变。从收集系统中检测到透明空化信号,并从肾囊附近形成的血液池,在ESWL处理期间从组织中记录弱信号。

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