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Synthesis and acoustic conversion of perfluorocarbon nanodroplets containing solid nanoparticles within their liquid cores

机译:含有固体纳米颗粒内含有固体纳米颗粒的全氟碳纳米粒子的合成和声学转化

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Phase change contrast agents (PCCAs) are fluorocarbon liquid droplets that convert into microbubbles when exposed to high acoustic pressures. Given their small size, PCCAs can exit leaky blood vessels and provide exogenous contrast outside of the vascular system, thereby circumventing one of the primary limitations of microbubbles. However, a limitation of PCCAs is the high acoustic pressure required for conversion to gaseous phase, which may restrict their use as a diagnostic imaging agent. The incorporation of solid nanoparticles into the liquid perfluorocarbon phase has been suggested as a means to reduce the pressures required to convert PCCAs, however, this has not been confirmed through rigorous empirical observation. In this work, we sought to determine whether the presence of solid nanoparticles contained within the liquid perfluorocarbon core of PCCAs effects the pressure required for acoustic conversion into a gaseous microbubble.
机译:相变造影剂(PCCA)是在暴露于高声学压力时转化为微泡的氟碳液滴。鉴于它们的体积小,PCCA可以退出泄漏血管并在血管系统外提供外源性对比,从而绕过微泡的主要限制之一。然而,PCCA的限制是转化为气相所需的高声压,其可以限制它们作为诊断成像剂的用途。已经提出了固体纳米颗粒进入液体全氟碳相中的方法,以减少转化植检植检植检植检植检所需压力的方法。然而,这尚未通过严格的经验观察来确认。在这项工作中,我们试图确定PCCAS液体全氟碳核心内含有的固体纳米颗粒是否会影响声学转化成气态微泡所需的压力。

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