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首页> 外文期刊>Ultrasound in Medicine and Biology >MICROVASCULAR INJURY AND PERFUSION CHANGES INDUCED BY ULTRASOUND AND MICROBUBBLES IN A MACHINE-PERFUSED PIG LIVER
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MICROVASCULAR INJURY AND PERFUSION CHANGES INDUCED BY ULTRASOUND AND MICROBUBBLES IN A MACHINE-PERFUSED PIG LIVER

机译:机器灌注猪肝中超声和微泡引起的微血管损伤和灌注变化

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摘要

Localized drug delivery and uptake can benefit from the combined action of ultrasound and microbubbles at a specific site. Some of the possible mechanisms suggested are vessel poration and/or cell poration, but the exact acoustic parameters that trigger those phenomena remain unknown. Ex vivo machine perfusion of human-sized organs is a technique that provides an ideal environment for pre-clinical investigations with high physiologic relevance not possible with in vitro experiments. In this work, ex vivo machine-perfused pig livers were combined with an image-guided therapy system to investigate microvascular flow changes caused by the interaction of ultrasound-driven microbubbles with the vasculature. The effects of acoustic pressure (1.7-4 MPa peak negative pressures) and number of cycles (1000 or 20 cycles) were examined. Perfusion changes caused by the action of ultrasound on microbubbles in the microcirculation were qualitatively and quantitatively assessed with contrast-enhanced ultrasound and used as a metric of the extent of vessel perforation, thus, extravasation. Areas that were exposed to peak negative pressures above 1.7 MPa underwent a detectable and irreversible perfusion change. Complete devascularization of the area exposed to ultrasound was observed at much larger acoustic pressures (similar to 4 MPa). Shorter acoustic pulses (20 cycles) produced markedly fewer perfusion changes than longer pulses (1000 cycles) under the same acoustic amplitude exposure. (C) 2016World Federation for Ultrasound in Medicine & Biology.
机译:超声和微泡在特定部位的结合作用可以使药物的局部递送和吸收受益。建议的一些可能的机制是血管渗透和/或细胞渗透,但是触发这些现象的确切声学参数仍然未知。人体大小的器官的离体机器灌注技术为临床前研究提供了理想的环境,具有很高的生理相关性,这是体外实验无法实现的。在这项工作中,将离体的机器灌注猪肝与图像引导的治疗系统结合起来,以研究由超声驱动的微气泡与脉管系统的相互作用引起的微血管流量变化。检查了声压(1.7-4 MPa峰值负压)和循环次数(1000或20个循环)的影响。用超声增强造影剂定性和定量地评估了超声对微循环中微气泡作用所引起的灌注变化,并将其用作衡量血管穿孔程度(从而衡量渗出程度)的指标。暴露于高于1.7 MPa的峰值负压的区域发生了可检测且不可逆的灌注变化。在更大的声压(类似于4 MPa)下,可以观察到暴露于超声的区域完全脱血管。在相同的声振幅曝光下,较短的声脉冲(20个周期)产生的灌注变化明显少于较长的脉冲(1000个周期)。 (C)2016世界医学和生物学超声联合会。

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