Gui Dawei, Tsekos Nikolaos V
Cardiovascular Imaging Laboratory, Mallinckrodt Institute of Radiology, Washington University Medical School, St. Louis, Missouri 63110, USA.
J Magn Reson Imaging. 2006 Nov;24(5):1151-8. doi: 10.1002/jmri.20728.
To implement a short-duration magnetization preparation sequence, which consists of a saturation followed by multiple inversion pulses, for imaging of short-T1 species and suppression of long-T1 species.
Computer optimizations were performed to derive preparation schemes that 1) suppress long-T1 background species with T1>or=250 msec, 2) maximize the MZ of contrast-enhanced (CE) structures with T1<or=50 msec, and 3) have a preparation duration in the range of 200 msec. The optimized sequences were tested on a phantom and a pig model instrumented with an intracoronary catheter for infusion of contrast media.
Computer simulations generated preparation schemes with durations of 165-225 msec depending on the number of preparation pulses used, which generated saturation of over 98% for T1>250 msec, and about a 30% reduction for 20 msec<T1<50 msec. The phantom studies validated the performance of the optimized sequences. Coronary artery angiograms (380 msec for preparation and image acquisition) demonstrated signal-to-noise ratios (SNRs) in the range of 13-15.5 and contrast-to-noise ratios (CNRs) in the range of 6.3-7.1 in the CE coronary vessels.
This work demonstrates that fast magnetization-driven preparation schemes can be implemented for fast imaging of CE coronary vessels with efficient saturation of background species.
实施一种短持续时间的磁化准备序列,该序列由一次饱和脉冲后跟多个反转脉冲组成,用于短T1物质的成像以及长T1物质的抑制。
进行计算机优化以得出准备方案,该方案要满足:1)抑制T1≥250毫秒的长T1背景物质;2)使T1≤50毫秒的对比增强(CE)结构的Mz最大化;3)准备持续时间在200毫秒范围内。在一个体模和一个配备冠状动脉内导管用于注入造影剂的猪模型上对优化后的序列进行测试。
计算机模拟得出了持续时间为165 - 225毫秒的准备方案,具体取决于所使用的准备脉冲数量,该方案对于T1>250毫秒的物质产生超过98%的饱和,对于20毫秒<T1<50毫秒的物质产生约30%的减少。体模研究验证了优化序列的性能。冠状动脉血管造影(准备和图像采集时间为380毫秒)显示CE冠状动脉血管中的信噪比(SNR)在13 - 15.5范围内,对比噪声比(CNR)在6.3 - 7.1范围内。
这项工作表明,快速磁化驱动的准备方案可用于CE冠状动脉血管的快速成像,并能有效饱和背景物质。