Goldfarb James W
Department of Research and Education, Saint Francis Hospital, Roslyn, New York 11576, and Program in Biomedical Engineering, SUNY Stony Brook, NY, USA.
Magn Reson Med. 2007 Sep;58(3):448-53. doi: 10.1002/mrm.21360.
An MR angiographic method is presented in which a rotating 2D slice is centered on and targets a region or vessel of interest. Collecting a series of slices rotating about the center of the targeted region yields projection data sufficient for the calculation of 3D volumetric data of the region using conventional backprojection reconstruction techniques. These volumetric data depict the internal structure of the vessel and can be processed and displayed with multiplanar reformation, maximum intensity projections, and 3D rendering algorithms. The rotational angiographic acquisition preserves the high temporal resolution of 2D-MR digital subtraction angiography with the added benefit of 3D reformatting and display. The method is explained in detail and results from phantom and human experiments are presented.
本文介绍了一种磁共振血管造影方法,其中旋转的二维切片以感兴趣区域或血管为中心并靶向该区域。收集围绕目标区域中心旋转的一系列切片会产生足够的投影数据,以便使用传统的反投影重建技术来计算该区域的三维体积数据。这些体积数据描绘了血管的内部结构,并且可以通过多平面重组、最大强度投影和三维渲染算法进行处理和显示。旋转血管造影采集保留了二维磁共振数字减影血管造影的高时间分辨率,同时还具有三维重新格式化和显示的额外优势。本文详细解释了该方法,并展示了模型实验和人体实验的结果。