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Effects of microchannel confinement on acoustic vaporisation of ultrasound phase change contrast agents

机译:微通道限制对超声相变造影剂声蒸发的影响

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摘要

The sub-micron phase change contrast agent (PCCA) composed of a perfluorocarbon liquid core can be activated into gaseous state and form stable echogenic microbubbles for contrast-enhanced ultrasound imaging. It has shown great promise in imaging microvasculature, tumour microenvironment, and cancer cells. Although PCCAs have been extensively studied for different diagnostic and therapeutic applications, the effect of biologically geometrical confinement on the acoustic vaporisation of PCCAs is still not clear. We have investigated the difference in PCCA-produced ultrasound contrast enhancement after acoustic activation with and without a microvessel confinement on a microchannel phantom. The experimental results indicated more than oneorder of magnitude less acoustic vaporisation in a microchannel than that in a free environment taking into account the attenuation effect of the vessel on the microbubble scattering. This may provide an improved understanding in the applications of PCCAs in vivo.
机译:由全氟化碳液体核心组成的亚微米相变造影剂(PCCA)可以被激活到气态状态并形成稳定的回声微泡,用于对比增强的超声成像。它在成像微血管结构,肿瘤微环境和癌细胞中表达了很大的希望。虽然PCCA已被广泛研究不同的诊断和治疗应用,但生物学上几何限制对PCCA的声蒸发的影响仍未清楚。在微通道幻影上,我们研究了声学激活后PCCA产生的超声对比度增强的差异。实验结果表明,微通道中的声学蒸发量大于一个以上的声蒸发,而不是在自由环境中考虑到血管对微泡散射的衰减效果。这可以在体内PCCA的应用中提供改进的理解。

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