Zhang Honglei, Maki Jeffrey H, Prince Martin R
Department of Radiology, Weill Medical College of Cornell University, New York, New York, USA.
J Magn Reson Imaging. 2007 Jan;25(1):13-25. doi: 10.1002/jmri.20767.
Safe, fast, accurate contrast arteriography can be obtained utilizing gadolinium (Gd) and 3D MR data acquisition for diagnosing vascular diseases. Optimizing contrast enhanced MRA (CE MRA), however, requires understanding the complex interplay between Gd injection timing, the Fourier mapping of 3D MR data acquisition and a multitude of parameters determining resolution, anatomic coverage, and sensitivity to motion artifacts. It is critical to time the bolus peak to coincide with central k-space data acquisition, which dominates image contrast. Oversampling the center of k-space allows reconstruction of multiple 3D acquisitions in rapid succession to time-resolve the passage of the contrast bolus. Parallel imaging increases resolution, shortens scan time and compresses the center of k-space into a shorter period of time, thereby minimizing motion and timing artifacts. Absence of ionizing radiation allows MRA to be repeated and combined with additional sequences to more fully characterize anatomy, flow, and physiology. Utilizing stepping table technology and thigh compression, whole body MRA is possible with a single contrast injection. As MR technology continues to advance, CE MRA becomes better and simpler to perform, increasing its efficacy in the diagnosis and management of vascular diseases.
利用钆(Gd)和三维磁共振(MR)数据采集可获得安全、快速、准确的对比剂血管造影,用于诊断血管疾病。然而,优化对比增强磁共振血管造影(CE MRA)需要了解钆注射时机、三维MR数据采集的傅里叶映射以及众多决定分辨率、解剖覆盖范围和对运动伪影敏感度的参数之间的复杂相互作用。将团注峰值与主导图像对比度的中心k空间数据采集时间同步至关重要。对k空间中心进行过采样可实现多个三维采集的快速连续重建,以时间分辨对比剂团注的通过情况。并行成像可提高分辨率、缩短扫描时间并将k空间中心压缩到更短的时间段内,从而将运动和时间伪影降至最低。无电离辐射使得MRA能够重复进行,并与其他序列相结合,以更全面地描绘解剖结构、血流和生理情况。利用步进床技术和大腿压迫,单次注射对比剂即可进行全身MRA检查。随着MR技术不断进步,CE MRA的操作变得更加简便,在血管疾病的诊断和管理中的效能也不断提高。