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用于全氟碳液滴汽化和超声成像的脉冲序列。

Pulse sequences for uniform perfluorocarbon droplet vaporization and ultrasound imaging.

机构信息

Joint Department of Biomedical Engineering, University of North Carolina at Chapel Hill and North Carolina State University, CB 7575, Chapel Hill, NC, USA.

Joint Department of Biomedical Engineering, University of North Carolina at Chapel Hill and North Carolina State University, CB 7575, Chapel Hill, NC, USA.

出版信息

Ultrasonics. 2014 Sep;54(7):2024-33. doi: 10.1016/j.ultras.2014.05.013. Epub 2014 Jun 6.

Abstract

Phase-change contrast agents (PCCAs) consist of liquid perfluorocarbon droplets that can be vaporized into gas-filled microbubbles by pulsed ultrasound waves at diagnostic pressures and frequencies. These activatable contrast agents provide benefits of longer circulating times and smaller sizes relative to conventional microbubble contrast agents. However, optimizing ultrasound-induced activation of these agents requires coordinated pulse sequences not found on current clinical systems, in order to both initiate droplet vaporization and image the resulting microbubble population. Specifically, the activation process must provide a spatially uniform distribution of microbubbles and needs to occur quickly enough to image the vaporized agents before they migrate out of the imaging field of view. The development and evaluation of protocols for PCCA-enhanced ultrasound imaging using a commercial array transducer are described. The developed pulse sequences consist of three states: (1) initial imaging at sub-activation pressures, (2) activating droplets within a selected region of interest, and (3) imaging the resulting microbubbles. Bubble clouds produced by the vaporization of decafluorobutane and octafluoropropane droplets were characterized as a function of focused pulse parameters and acoustic field location. Pulse sequences were designed to manipulate the geometries of discrete microbubble clouds using electronic steering, and cloud spacing was tailored to build a uniform vaporization field. The complete pulse sequence was demonstrated in the water bath and then in vivo in a rodent kidney. The resulting contrast provided a significant increase (>15 dB) in signal intensity.

摘要

相变型对比剂(PCCA)由液态全氟碳液滴组成,这些液滴在诊断压力和频率的脉冲超声波作用下可蒸发成充满气体的微泡。这些可激活的对比剂相对于传统的微泡对比剂具有更长的循环时间和更小的尺寸的优势。然而,为了在不影响当前临床系统的情况下优化这些试剂的超声激活,需要协调脉冲序列,以启动液滴蒸发并对生成的微泡群体进行成像。具体而言,激活过程必须提供微泡的空间均匀分布,并且需要足够快地发生,以便在蒸发试剂迁移出成像视场之前对其进行成像。本文描述了使用商业阵列换能器开发和评估 PCCA 增强超声成像的方案。所开发的脉冲序列由三个状态组成:(1)在亚激活压力下进行初始成像,(2)在选定的感兴趣区域内激活液滴,(3)对生成的微泡进行成像。通过对全氟丁烷和全氟丙烷液滴的蒸发产生的气泡云进行了聚焦脉冲参数和声场位置的特征分析。脉冲序列被设计用于使用电子转向来操纵离散微泡云的几何形状,并根据需要调整云间距以构建均匀的蒸发场。该完整的脉冲序列在水槽中进行了演示,然后在鼠肾中进行了体内演示。所产生的对比剂显著提高了信号强度(>15dB)。

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