Yeh Chih-Kuang, Ferrara Katherine W, Kruse Dustin E
National Taiwan University, Taipei, Taiwan.
IEEE Trans Med Imaging. 2004 Oct;23(10):1263-75. doi: 10.1109/TMI.2004.834614.
In order to improve the resolution of contrast-assisted imaging systems, we have created a high-frequency destruction/contrast replenishment imaging system with a spatial resolution of 160 microm x 160 microm. The system utilizes a 1-MHz cylindrically focused transducer for destruction and a 25-MHz spherically focused transducer for pulse/echo imaging. Speckle tracking and a clutter filter are applied across frames to remove the challenging physiologic motion artifacts that are obtained when imaging with a mechanically scanned transducer. Using a new estimation technique, flow constants proportional to absolute flow rate were estimated from B-mode time-intensity curves (TICs). The in vitro results indicate a correlation between the actual flow velocity and the estimated rate constant. In vivo images are presented showing blood perfusion in the ciliary processes and iris of the rabbit eye. The regions of interest (ROIs) from the ciliary processes yielded slower perfusion compared with the iris, as expected from vascular casts of the microcirculation in this region. Potential applications of this system include high-resolution perfusion assessment in small animals.
为了提高造影辅助成像系统的分辨率,我们创建了一种空间分辨率为160微米×160微米的高频破坏/造影剂补充成像系统。该系统使用一个1兆赫兹的圆柱形聚焦换能器进行破坏,并使用一个25兆赫兹的球形聚焦换能器进行脉冲/回波成像。在各帧中应用散斑跟踪和杂波滤波器,以去除使用机械扫描换能器成像时出现的具有挑战性的生理运动伪像。使用一种新的估计技术,从B模式时间强度曲线(TIC)中估计与绝对流速成比例的流量常数。体外结果表明实际流速与估计速率常数之间存在相关性。给出了体内图像,显示了兔眼睫状体和虹膜的血液灌注情况。如该区域微循环血管铸型所预期的那样,睫状体的感兴趣区域(ROI)与虹膜相比灌注较慢。该系统的潜在应用包括小动物的高分辨率灌注评估。