Therapeutic Ultrasound, Joint Department of Physics, Royal Marsden NHS Foundation Trust: Institute of Cancer Research, Downs Road, Sutton, Surrey, SM2 5PT, UK.
Phys Med Biol. 2013 Apr 7;58(7):2281-304. doi: 10.1088/0031-9155/58/7/2281. Epub 2013 Mar 12.
An experimental system designed for the study of the effects of diagnostic or therapeutic ultrasound exposure on isolated blood vessels in the presence or absence of intraluminal contrast agent is described. The system comprised several components. A microscope was used to monitor vessel size (and thus vessel functionality), and potential leakage of intraluminal 70 kDa FITC-dextran fluorescence marker. A vessel chamber allowed the mounting of an isolated vessel whilst maintaining its viability, with pressure regulation for the control of intraluminal pressure and induction of flow for the infusion of contrast microbubbles. A fibre-optic hydrophone sensor mounted on the vessel chamber using a micromanipulator allowed pre-exposure targeting of the vessel to within 150 µm, and monitoring of acoustic cavitation emissions during exposures. Acoustic cavitation was also detected using changes in the ultrasound drive voltage and by detection of audible emissions using a submerged microphone. The suitability of this system for studying effects in the isolated vessel model has been demonstrated using a pilot study of 6 sham exposed and 18 high intensity focused ultrasound exposed vessels, with or without intraluminal contrast agent (SonoVue) within the vessels.
描述了一种用于研究诊断或治疗性超声辐射对存在或不存在管内对比剂的离体血管的影响的实验系统。该系统由几个组件组成。显微镜用于监测血管大小(从而监测血管功能)以及管内 70 kDa FITC-葡聚糖荧光标记物的潜在泄漏。血管室允许安装离体血管,同时保持其活力,通过压力调节控制管内压力并诱导流动以注入对比微泡。使用微操纵器将光纤水听器传感器安装在血管室上,允许在 150 µm 范围内对血管进行预辐射靶向,并在辐射期间监测声空化发射。还通过检测超声驱动电压的变化以及使用水下麦克风检测可听见的发射来检测声空化。使用 6 个假暴露和 18 个高强度聚焦超声暴露的血管(有或没有管内对比剂(SonoVue))进行的初步研究证明了该系统在离体血管模型中研究效应的适用性。