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Effects of F-Number on the Histotripsy Intrinsic Threshold and Cavitation Bubble Cloud Behavior

机译:F数对组织肌内在阈值和空化气泡云行为的影响

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摘要

Histotripsy is an ultrasound ablation method that depends on the initiation of a cavitation bubble cloud to fractionate soft tissue. Although previous work has provided significant insight into the process of intrinsic threshold histotripsy, the majority of these studies have used highly focused (i.e. f-number<0.6) transducers. In this study, we investigate the effects of f-number on the histotripsy intrinsic threshold and cavitation bubble cloud behavior using a 500 kHz array transducer, with the effective f-number of the transducer varied from 0.51 to 0.89. The intrinsic threshold did not significantly change with f-number, with the threshold remaining ~27–30 MPa for all conditions. The predictability of intrinsic threshold histotripsy was further demonstrated by experiments comparing the predicted and experimentally measured bubble cloud dimensions, with results showing close agreement for all f-numbers. Finally, the effects of f-number on “bubble density” and tissue fractionation efficiency were investigated, with results supporting the hypothesis that the density of the bubbles within the bubble cloud significantly decreases at higher f-numbers, resulting in decreased fractionation efficiency. Overall, this study provides significant insight into the effects of f-number on intrinsic threshold histotripsy that will help to guide the development of intrinsic threshold histotripsy for specific clinical applications.
机译:组织碎裂术是一种超声消融方法,它依赖于空化气泡云的开始来分离软组织。尽管先前的工作已经对内在阈值组织曲解的过程提供了重要的见识,但这些研究中的大多数都使用了高度聚焦(即f数<0.6)的传感器。在这项研究中,我们调查了f值对使用500 kHz阵列传感器的组织学固有阈值和空化气泡云行为的影响,传感器的有效f值在0.51到0.89之间变化。固有阈值并未随f值显着变化,在所有条件下阈值均保持在〜27-30 MPa。通过比较预测的和实验测量的气泡云尺寸的实验进一步证明了内在阈值组织曲直性的可预测性,结果表明所有f值都非常吻合。最后,研究了f值对“气泡密度”和组织分离效率的影响,结果支持以下假设:较高的f值下,气泡云中气泡的密度显着降低,导致分离效率降低。总体而言,这项研究为f值对内在阈值组织曲霉病的影响提供了重要的见解,这将有助于指导针对特定临床应用的内在阈值组织病学的发展。

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