Bosmans H, Bogaert J, Rademakers F, Marchal G, Laub G, Verschakelen J, Baert A L
Department of Radiology, University Hospitals, Leuven, Belgium.
MAGMA. 1996 Jun;4(2):123-33. doi: 10.1007/BF01772519.
Myocardial tagging with magnetic resonance (MR) imaging offers unique possibilities for noninvasive left ventricular (LV) strain analysis. True three-dimensional strain analysis can be achieved with tags implemented in cardiac short axis and long axis images. Spin-echo (SE) techniques have been used for these studies. However, this approach is time-consuming: images at different phases of the cardiac cycle have to be obtained in successive measurements and hence the total number of measurements equals the number of time frames. Moreover, the images are often degraded by flow and motion artifacts. The purpose of this study was to optimize a faster and more robust MR tagging sequence for use on a clinical whole-body 1 T MR system with optimal persistence of the tags during the entire cardiac cycle. The tagging pulses were implemented in gradient-recalled-echo (GRE) sequences and compared to SE-based acquisitions. The effects of the use of flow-compensating gradients, the excitation angles, and the angles of the saturation pulses have been studied with MR signal simulations and in comparative measurements in volunteers. GRE acquisitions with flow-compensating gradients are robust techniques for myocardial tagging acquisitions. Use of optimized flip angles and saturation pulses can significantly improve delineation of the tag and can be used up to at least 700 ms after the R-wave. Therefore, LV tagging with GRE acquisitions using optimized MR parameters is a robust and promising technique.
磁共振(MR)成像心肌标记为无创性左心室(LV)应变分析提供了独特的可能性。通过在心脏短轴和长轴图像中实施标记,可以实现真正的三维应变分析。自旋回波(SE)技术已用于这些研究。然而,这种方法很耗时:必须在连续测量中获取心动周期不同阶段的图像,因此测量总数等于时间帧数。此外,图像经常因血流和运动伪影而退化。本研究的目的是优化一种更快、更稳健的MR标记序列,用于临床全身1T MR系统,并在整个心动周期中实现标记的最佳持久性。标记脉冲在梯度回波(GRE)序列中实施,并与基于SE的采集进行比较。通过MR信号模拟和志愿者的对比测量,研究了使用流动补偿梯度、激发角度和饱和脉冲角度的效果。带有流动补偿梯度的GRE采集是心肌标记采集的稳健技术。使用优化的翻转角度和饱和脉冲可以显著改善标记的描绘,并且可以在R波后至少700毫秒内使用。因此,使用优化的MR参数进行GRE采集的LV标记是一种稳健且有前景的技术。