Stafford Randall B, Sabati Mohammad, Mahallati Houman, Frayne Richard
Department of Physics and Astronomy, University of Calgary, Calgary, Alberta, Canada.
Magn Reson Med. 2008 Feb;59(2):430-3. doi: 10.1002/mrm.21479.
Balanced steady-state free precession (bSSFP) is capable of producing ample fat-water separation. In the case of the bSSFP Dixon method, the phase between fat and water can be manipulated by setting repetition time (TR) to an odd-half-multiple of the cycle time and adjusting the center frequency to acquire fat-water in in-phase and opposed-phase images. Adding an image collected when fat and water are in-phase to an image in which fat and water are opposed-phase produces a water-only image. Of the water signals, arterial blood has the highest T(2)/T(1) contrast, making the arterial signal appear brighter than both venous blood and muscle in the final image. In this study, the bSSFP Dixon method was used to collect coronal water-only three-dimensional (3D) volumes at multiple anatomical stations in the legs of five healthy volunteers. The image quality was quantified by region-of-interest (ROI) analysis of signal intensities between arterial blood, venous blood, muscle, and fat. The images were also assessed for diagnostic quality by a trained radiologist. The bSSFP Dixon method was successful in producing non-contrast-enhanced (NCE) images of the blood vessels in the lower limbs. The work presented here is a proof-of-concept for the use of the bSSFP Dixon method for 3D peripheral angiography.
平衡稳态自由进动(bSSFP)能够实现充分的脂肪-水分离。在bSSFP Dixon方法中,可通过将重复时间(TR)设置为周期时间的奇半倍数并调整中心频率,来操控脂肪和水之间的相位,以获取同相和反相图像中的脂肪-水信息。将脂肪和水处于同相时采集的图像与脂肪和水处于反相时的图像相加,可生成仅包含水的图像。在水信号中,动脉血具有最高的T(2)/T(1)对比度,使得动脉信号在最终图像中比静脉血和肌肉都更亮。在本研究中,采用bSSFP Dixon方法在五名健康志愿者下肢的多个解剖部位采集了仅包含水的冠状面三维(3D)容积图像。通过对动脉血、静脉血、肌肉和脂肪之间信号强度进行感兴趣区域(ROI)分析来量化图像质量。一名经过培训的放射科医生还对图像的诊断质量进行了评估。bSSFP Dixon方法成功生成了下肢血管的非增强(NCE)图像。本文所展示的工作是将bSSFP Dixon方法用于三维外周血管造影的概念验证。