Department of Biomedical Engineering, University of Michigan, Ann Arbor, MI, USA.
Ultrasound Med Biol. 2009 Dec;35(12):1982-94. doi: 10.1016/j.ultrasmedbio.2009.07.001. Epub 2009 Oct 24.
Clinically available thrombolysis techniques are limited by either slow reperfusion (drugs) or invasiveness (catheters) and carry significant risks of bleeding. In this study, the feasibility of using histotripsy as an efficient and noninvasive thrombolysis technique was investigated. Histotripsy fractionates soft tissue through controlled cavitation using focused, short, high-intensity ultrasound pulses. In vitro blood clots formed from fresh canine blood were treated by histotripsy. The treatment was applied using a focused 1-MHz transducer, with five-cycle pulses at a pulse repetition rate of 1kHz. Acoustic pressures varying from 2 to 12MPa peak negative pressure were tested. Our results show that histotripsy can perform effective thrombolysis with ultrasound energy alone. Histotripsy thrombolysis only occurred at peak negative pressure >or=6MPa when initiation of a cavitating bubble cloud was detected using acoustic backscatter monitoring. Blood clots weighing 330mg were completely broken down by histotripsy in 1.5 to 5min. The clot was fractionated to debris with >96% weight smaller than 5mum diameter. Histotripsy thrombolysis treatment remained effective under a fast, pulsating flow (a circulatory model) as well as in static saline. Additionally, we observed that fluid flow generated by a cavitation cloud can attract, trap and further break down clot fragments. This phenomenon may provide a noninvasive method to filter and eliminate hazardous emboli during thrombolysis.
临床上可用的溶栓技术要么灌注缓慢(药物),要么具有侵入性(导管),且存在显著的出血风险。在这项研究中,我们探究了将超声空化爆破(histotripsy)用作一种高效、非侵入性溶栓技术的可行性。超声空化爆破通过使用聚焦短脉冲高强度超声来使组织碎裂。体外新鲜犬血形成的血栓接受了超声空化爆破处理。采用聚焦 1MHz 换能器,以 1kHz 的脉冲重复频率施加 5 个周期的脉冲。测试了从 2MPa 到 12MPa 的不同峰值负压。我们的结果表明,单独使用超声能量即可实现有效的溶栓。当使用背向散射监测检测到空化泡云的起始时,仅在峰值负压 >或=6MPa 时才会发生超声空化爆破溶栓。330mg 的血栓在 1.5 至 5 分钟内被超声空化爆破完全分解。血栓被碎裂成 >96%重量小于 5μm 直径的碎片。在快速脉动流(循环模型)以及静态盐水中,超声空化爆破溶栓治疗仍然有效。此外,我们观察到空化云产生的流体流动可以吸引、捕获并进一步分解血栓碎片。这种现象可能为溶栓过程中过滤和消除有害栓子提供了一种非侵入性方法。