Joint Department of Biomedical Engineering, The University of North Carolina and North Carolina State University, Chapel Hill, NC 27599, USA.
Phys Med Biol. 2014 Jan 20;59(2):379-401. doi: 10.1088/0031-9155/59/2/379. Epub 2013 Dec 19.
Phase-change contrast agents (PCCAs) provide a dynamic platform to approach problems in medical ultrasound (US). Upon US-mediated activation, the liquid core vaporizes and expands to produce a gas bubble ideal for US imaging and therapy. In this study, we demonstrate through high-speed video microscopy and US interrogation that PCCAs composed of highly volatile perfluorocarbons (PFCs) exhibit unique acoustic behavior that can be detected and differentiated from standard microbubble contrast agents. Experimental results show that when activated with short pulses PCCAs will over-expand and undergo unforced radial oscillation while settling to a final bubble diameter. The size-dependent oscillation phenomenon generates a unique acoustic signal that can be passively detected in both time and frequency domain using confocal piston transducers with an 'activate high' (8 MHz, 2 cycles), 'listen low' (1 MHz) scheme. Results show that the magnitude of the acoustic 'signature' increases as PFC boiling point decreases. By using a band-limited spectral processing technique, the droplet signals can be isolated from controls and used to build experimental relationships between concentration and vaporization pressure. The techniques shown here may be useful for physical studies as well as development of droplet-specific imaging techniques.
相变型对比剂(PCCAs)为解决医学超声(US)中的问题提供了一个动态平台。在超声介导的激活下,液芯蒸发并膨胀,产生一个理想的用于 US 成像和治疗的气泡。在这项研究中,我们通过高速视频显微镜和 US 询问证明,由高挥发性全氟碳化合物(PFCs)组成的 PCCAs 表现出独特的声学行为,可以与标准微泡对比剂相区别。实验结果表明,当用短脉冲激活时,PCCAs 将过度膨胀并经历非强制径向振荡,然后稳定到最终的气泡直径。这种尺寸依赖性的振荡现象产生了一种独特的声信号,可以使用具有“激活高”(8 MHz,2 个周期)和“监听低”(1 MHz)方案的共焦活塞换能器在时间和频域中被动检测。结果表明,声“特征”的幅度随着 PFC 沸点的降低而增加。通过使用带限谱处理技术,可以将液滴信号与对照物分离,并用于建立浓度与蒸发压力之间的实验关系。这里展示的技术可能对物理研究以及液滴特定成像技术的发展都有用。