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A tissue-mimicking ultrasound test object using droplet vaporization to create point targets

机译:模仿组织的超声测试对象,使用液滴蒸发来创建点目标

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摘要

Ultrasound test objects containing reference point targets could be useful for evaluating ultrasound systems and phase aberration correction methods. Polyacrylamide gels containing albumin-stabilized droplets (3.6 ;C;m mean diameter) of dodecafluoropentane (DDFP) are being developed for this purpose. Perturbation by ultrasound causes spontaneous vaporization of the superheated droplets to form gas bubbles, a process termed acoustic droplet vaporization (ADV). The resulting bubbles (20 to 160 ;C;mm diameter) are small compared with acoustic wavelengths in diagnostic ultrasound and are theoretically suitable for use as point targets (phase errors <20u000b0; for typical f-numbers). Bubbles distributed throughout the material are convenient for determining the point spread function in an imaging plane or volume. Cooling the gel causes condensation of the DDFP droplets, which may be useful for storage. Studying ADV in such viscoelastic media could provide insight into potential bioeffects from rapid bubble formation.
机译:包含参考点目标的超声测试对象可用于评估超声系统和相差校正方法。为此目的,正在开发含有十二烷基氟戊烷(DDFP)的白蛋白稳定液滴(平均直径3.6; C; m)的聚丙烯酰胺凝胶。超声波的扰动会导致过热液滴的自发汽化,从而形成气泡,这一过程称为声学液滴汽化(ADV)。与诊断超声中的声波波长相比,所产生的气泡(直径为20至160; C; mm)较小,并且理论上适合用作点目标(相位误差<20u000b0;对于典型的f数)。分布在整个材料中的气泡便于确定成像平面或体积中的点扩散函数。冷却凝胶会导致DDFP小滴凝结,这可能对存储有用。在这种粘弹性介质中研究ADV可以提供对快速气泡形成的潜在生物效应的了解。

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