Nikolov Svetoslav Ivanov, Jensen Jørgen Arendt
Technical University of Denmark, DK-2800 Kgs. Lyngby, Denmark.
IEEE Trans Ultrason Ferroelectr Freq Control. 2003 Jul;50(7):848-56. doi: 10.1109/tuffc.2003.1214504.
A new method for acquiring flow images using synthetic aperture techniques in medical ultrasound is presented. The new approach makes it possible to have a continuous acquisition of flow data throughout the whole image simultaneously, and this can significantly improve blood velocity estimation. Any type of filter can be used for discrimination between tissue and blood flow without initialization, and the number of lines used for velocity estimation is limited only by the nonstationarity of the flow. The new approach is investigated through both simulations and measurements. A flow rig is used for generating a parabolic laminar flow, and a research scanner is used for acquiring RF data from individual transducer elements. A reference profile is calculated from a mass flow meter. The parabolic velocity profile is estimated using the new approach with a relative standard deviation of 2.2% and a mean relative bias of 3.4% using 24 pulse emissions at a flow angle of 45 degrees. The 24 emissions can be used for making a full-color flow map image. An in-vivo image of flow in the carotid artery for a 29-year-old male also is presented. The full image is acquired using 24 emissions.
提出了一种在医学超声中使用合成孔径技术获取血流图像的新方法。这种新方法能够在整个图像上同时连续采集血流数据,这可显著提高血流速度估计。无需初始化,任何类型的滤波器都可用于区分组织和血流,用于速度估计的线数仅受血流非平稳性限制。通过模拟和测量对新方法进行了研究。使用流动试验台生成抛物线形层流,使用研究型扫描仪从各个换能器元件采集射频数据。通过质量流量计计算参考剖面。使用新方法在45度流动角度下发射24个脉冲,估计抛物线速度剖面,相对标准偏差为2.2%,平均相对偏差为3.4%。这24次发射可用于制作全彩色血流图图像。还展示了一名29岁男性颈动脉内血流的体内图像。使用24次发射采集完整图像。