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High-intensity focused ultrasound ablation enhancement in vivo via phase-shift nanodroplets compared to microbubbles

机译:与微泡相比通过相移纳米液滴在体内进行高强度聚焦超声消融

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摘要

BackgroundDuring high-intensity focused ultrasound (HIFU) surgical procedures, there is a need to rapidly ablate pathological tissue while minimizing damage to healthy tissue. Current techniques are limited by relatively long procedure times and risks of off-target heating of healthy tissue. One possible solution is the use of microbubbles, which can improve the efficiency of thermal energy delivery during HIFU procedures. However, microbubbles also suffer from limitations such as low spatial selectivity and short circulation time in vivo. In this study, the use of a dual-perfluorocarbon nanodroplet that can enhance thermal ablation, yet retains high spatial selectivity and circulation half-life, was evaluated in vivo and compared to traditional microbubble agents during HIFU ablations of rat liver.
机译:背景技术在高强度聚焦超声(HIFU)外科手术过程中,需要快速消融病理组织,同时将对健康组织的损害最小化。当前的技术受到相对长的过程时间和健康组织脱靶加热的风险的限制。一种可能的解决方案是使用微泡,它可以提高HIFU程序中热能传递的效率。然而,微泡还受到诸如低空间选择性和体内短循环时间之类的局限。在这项研究中,在体内评估了使用双重全氟化碳纳米液滴(可增强热消融,但保留了较高的空间选择性和循环半衰期)的体内效果,并将其与大鼠肝HIFU消融期间的传统微泡剂进行了比较。

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