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Ultrasonic atomization of tissue and its role in tissue fractionation by high intensity focused ultrasound

机译:组织超声雾化及其在组织分馏中的作用高强度聚焦超声

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摘要

Atomization and fountain formation is a well-known phenomenon that occurs when a focused ultrasound wave in liquid encounters an air interface. High intensity focused ultrasound (HIFU) has been shown to fractionate tissue into submicron-size fragments in a process termed boiling histotripsy, wherein the focused ultrasound wave superheats the tissue at the focus, producing a millimetre-size boiling or vapour bubble in several milliseconds. Yet the question of how this millimetre-size boiling bubble creates submicron-size tissue fragments remains. The hypothesis of this work is that tissue can behave as a liquid such that it forms a fountain and atomization within the vapour bubble produced in boiling histotripsy. We describe an experiment, in which a 2-MHz HIFU transducer (maximum in situ intensity of 24,000 W/cm2) was aligned with an air-tissue interface meant to simulate the boiling bubble. Atomization and fountain formation were observed with high-speed photography and resulted in tissue erosion. Histological examination of the atomized tissue showed whole and fragmented cells and nuclei. Air-liquid interfaces were also filmed. Our conclusion was that HIFU can fountain and atomize tissue. Although this process does not entirely mimic what was observed in liquids, it does explain many aspects of tissue fractionation in boiling histotripsy.
机译:雾化和喷泉形成是众所周知的现象,当液体中的聚焦超声波遇到空气界面时会发生。高强度聚焦超声(HIFU)已显示出在称为沸腾组织肌的过程中将组织分成亚微米大小的碎片,其中聚焦的超声波使聚焦处的组织过热,在几毫秒内产生毫米大小的沸腾或蒸汽泡。然而,这个毫米大小的沸腾气泡如何产生亚微米大小的组织碎片的问题仍然存在。这项工作的假设是,组织可以表现为液体,从而在沸腾的组织曲霉产生的蒸气泡中形成喷泉和雾化。我们描述了一个实验,其中将2 MHz HIFU换能器(最大原位强度为24,000 W / cm 2 )与旨在模拟沸腾气泡的空气-组织界面对齐。高速摄影观察到雾化和喷泉形成,并导致组织腐蚀。雾化组织的组织学检查显示完整和破碎的细胞和细胞核。气液界面也被拍摄。我们的结论是HIFU可以润润和雾化组织。尽管此过程不能完全模仿在液体中观察到的过程,但确实可以解释沸腾的组织曲霉中组织分级分离的许多方面。

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