Christodoulou Anthony G, Zhao Bo, Zhang Haosen, Ho Chien, Liang Zhi-Pei
Department of Electrical and Computer Engineering and Beckman Institute for Advanced Science and Technology, University of Illinois at Urbana-Champaign, 1406 West Green Street, Urbana, IL 61801, USA.
Annu Int Conf IEEE Eng Med Biol Soc. 2011;2011:3732-5. doi: 10.1109/IEMBS.2011.6090635.
Magnetic resonance imaging (MRI) has long been recognized as a powerful tool for cardiovascular imaging because of its unique potential to measure blood flow, cardiac wall motion and tissue properties jointly. However, many clinical applications of cardiac MRI have been limited by low imaging speed. Three-dimensional cardiovascular MRI in real-time, or 4D cardiovascular MRI without cardiac and respiratory gating or triggering, remains an important technological goal of the MR cardiovascular research community. In this paper, we present a novel technique to achieve 4D cardiovascular MR imaging in unprecedented spatiotemporal resolution. This breakthrough is made possible through a creative use of sparse sampling theory and parallel imaging with phased array coils and a novel implementation of data acquisition and image reconstruction. We have successfully used the technique to perform 4D cardiovascular imaging on rats, achieving 0.65 mm × 0.65 mm × 0.31 mm spatial resolution with a frame rate of 67 fps. This capability enables simultaneous imaging of cardiac motion, respiratory motion, and first-pass myocardial perfusion. This in turn allows multiple cardiac assessments including measurement of ejection fraction, cardiac output, and myocardial blood flow in a single experiment. We believe that the proposed technique can open up many important applications of cardiovascular imaging and have significant impact on the field.
长期以来,磁共振成像(MRI)一直被视为心血管成像的强大工具,因为它具有联合测量血流、心脏壁运动和组织特性的独特潜力。然而,心脏MRI的许多临床应用受到成像速度低的限制。实时三维心血管MRI,即无需心脏和呼吸门控或触发的四维心血管MRI,仍然是MR心血管研究界的一个重要技术目标。在本文中,我们提出了一种新技术,以前所未有的时空分辨率实现四维心血管MR成像。通过创造性地运用稀疏采样理论、相控阵线圈并行成像以及数据采集和图像重建的新方法,这一突破得以实现。我们已成功运用该技术对大鼠进行四维心血管成像,实现了0.65毫米×0.65毫米×0.31毫米的空间分辨率,帧率为67帧/秒。这种能力能够同时对心脏运动、呼吸运动和首过心肌灌注进行成像。这进而允许在单个实验中进行多项心脏评估,包括射血分数、心输出量和心肌血流量的测量。我们相信,所提出的技术能够开启心血管成像的许多重要应用,并对该领域产生重大影响。