Reznik Nikita, Lajoinie Guillaume, Shpak Oleksandr, Gelderblom Erik C, Williams Ross, de Jong Nico, Versluis Michel, Burns Peter N
Department of Medical Biophysics, University of Toronto, Toronto, Ontario, Canada.
Physics of Fluids Group and MIRA Institute of Biomedical Technology and Technical Medicine, University of Twente, Enschede, The Netherlands.
Ultrasound Med Biol. 2014 Jun;40(6):1379-84. doi: 10.1016/j.ultrasmedbio.2013.11.025. Epub 2014 Jan 22.
The acoustic characteristics of microbubbles created from vaporized submicron perfluorocarbon droplets with fluorosurfactant coating are examined. Utilizing ultra-high-speed optical imaging, the acoustic response of individual microbubbles to low-intensity diagnostic ultrasound was observed on clinically relevant time scales of hundreds of milliseconds after vaporization. It was found that the vaporized droplets oscillate non-linearly and exhibit a resonant bubble size shift and increased damping relative to uncoated gas bubbles due to the presence of coating material. Unlike the commercially available lipid-coated ultrasound contrast agents, which may exhibit compression-only behavior, vaporized droplets may exhibit expansion-dominated oscillations. It was further observed that the non-linearity of the acoustic response of the bubbles was comparable to that of SonoVue microbubbles. These results suggest that vaporized submicron perfluorocarbon droplets possess the acoustic characteristics necessary for their potential use as ultrasound contrast agents in clinical practice.
研究了由具有氟表面活性剂涂层的汽化亚微米全氟碳液滴产生的微泡的声学特性。利用超高速光学成像,在汽化后数百毫秒的临床相关时间尺度上观察了单个微泡对低强度诊断超声的声学响应。结果发现,由于涂层材料的存在,汽化液滴会发生非线性振荡,相对于未涂层的气泡,其共振气泡尺寸会发生偏移,阻尼也会增加。与市售的脂质涂层超声造影剂可能仅表现出压缩行为不同,汽化液滴可能表现出以膨胀为主的振荡。进一步观察到,气泡声学响应的非线性与声诺维微泡相当。这些结果表明,汽化亚微米全氟碳液滴具备在临床实践中用作超声造影剂的潜在用途所需的声学特性。