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用于医学超声应用的亚微米级相移全氟碳液滴的生成方法。

Methods of Generating Submicrometer Phase-Shift Perfluorocarbon Droplets for Applications in Medical Ultrasonography.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2017 Jan;64(1):252-263. doi: 10.1109/TUFFC.2016.2619685. Epub 2016 Oct 20.

Abstract

Continued advances in the field of ultrasound and ultrasound contrast agents have created new approaches to imaging and medical intervention. Phase-shift perfluorocarbon droplets, which can be vaporized by ultrasound energy to transition from the liquid to the vapor state, are one of the most highly researched alternatives to clinical ultrasound contrast agents (i.e., microbubbles). In this paper, part of a special issue on methods in biomedical ultrasonics, we survey current techniques to prepare ultrasound-activated nanoscale phase-shift perfluorocarbon droplets, including sonication, extrusion, homogenization, microfluidics, and microbubble condensation. We provide example protocols and discuss advantages and limitations of each approach. Finally, we discuss best practice in characterization of this class of contrast agents with respect to size distribution and ultrasound activation.

摘要

超声学领域和超声造影剂的持续进步为成像和医学干预开辟了新途径。相移全氟碳液滴可通过超声能量汽化,从液态转变为气态,是临床超声造影剂(即微泡)的最主要替代物之一。在本期关于生物医学超声学方法的特刊中,我们综述了目前制备超声激活纳米级相移全氟碳液滴的技术,包括超声处理、挤压、匀化、微流控和微泡冷凝。我们提供了示例方案,并讨论了每种方法的优缺点。最后,我们讨论了此类造影剂的尺寸分布和超声激活特性的最佳表征方法。

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