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使用聚焦超声对血管模型中尺寸分离的微泡进行空化特性分析。

Cavitation Characterization of Size-Isolated Microbubbles in a Vessel Phantom Using Focused Ultrasound.

作者信息

Martinez Payton, Bottenus Nick, Borden Mark

机构信息

Biomedical Engineering Program, University of Colorado, Boulder, CO 80309, USA.

IQ Biology Program, University of Colorado, Boulder, CO 80309, USA.

出版信息

Pharmaceutics. 2022 Sep 12;14(9):1925. doi: 10.3390/pharmaceutics14091925.

Abstract

Pharmaceutical delivery can be noninvasively targeted on-demand by microbubble (MB) assisted focused ultrasound (FUS). Passive cavitation detection (PCD) has become a useful method to obtain real-time feedback on MB activity due to a FUS pulse. Previous work has demonstrated the acoustic PCD response of MBs at a variety of acoustic parameters, but few have explored variations in microbubble parameters. The goal of this study was to determine the acoustic response of different MB size populations and concentrations. Four MB size distributions were prepared (2, 3, 5 µm diameter and polydisperse) and pulled through a 2% agar wall-less vessel phantom. FUS was applied by a 1.515 MHz geometrically focused transducer for 1 ms pulses at 1 Hz PRF and seven distinct mechanical indices (MI) ranging from 0.01 to 1.0 (0.0123 to 1.23 MPa PNP). We found that the onset of harmonic (HCD) and broadband cavitation dose (BCD) depends on the mechanical index, MB size and MB concentration. When matched for MI, the HCD and BCD rise, plateau, and decline as microbubble concentration is increased. Importantly, when microbubble size and concentration are combined into gas volume fraction, all four microbubble size distributions align to similar onset and peak; these results may help guide the planning and control of MB + FUS therapeutic procedures.

摘要

药物递送可以通过微泡(MB)辅助聚焦超声(FUS)进行非侵入性的按需靶向。由于FUS脉冲,被动空化检测(PCD)已成为获取关于MB活性实时反馈的有用方法。先前的工作已经证明了MB在各种声学参数下的声学PCD响应,但很少有人探索微泡参数的变化。本研究的目的是确定不同MB尺寸群体和浓度的声学响应。制备了四种MB尺寸分布(直径为2、3、5 µm和多分散),并使其通过2%琼脂无壁血管模型。通过1.515 MHz几何聚焦换能器以1 Hz脉冲重复频率施加1 ms脉冲的FUS,并设置七个不同的机械指数(MI),范围从0.01到1.0(0.0123至1.23 MPa峰-峰压力)。我们发现谐波空化起始(HCD)和宽带空化剂量(BCD)取决于机械指数、MB尺寸和MB浓度。当匹配MI时,随着微泡浓度增加,HCD和BCD上升、达到平稳并下降。重要的是,当将微泡尺寸和浓度合并为气体体积分数时,所有四种微泡尺寸分布的起始和峰值相似;这些结果可能有助于指导MB + FUS治疗程序的规划和控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14d2/9501432/a5b839b2cd7d/pharmaceutics-14-01925-g001.jpg

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