Hathout Gasser, Jamshidi Neema
UCLA Department of Radiology, UCLA Center for Health Sciences, 10833 Le Conte Avenue, Los Angeles, CA 90095, USA.
Radiol Res Pract. 2012;2012:815729. doi: 10.1155/2012/815729. Epub 2012 Nov 5.
Rationale and Objectives. Accurate signal to tracer concentration maps are critical to quantitative MRI. The purpose of this study was to evaluate and optimize spoiled gradient echo (SPGR) MR sequences for the use of gadolinium (Gd-DTPA) as a kinetic tracer. Methods. Water-gadolinium phantoms were constructed for a physiologic range of gadolinium concentrations. Observed and calculated SPGR signal to concentration curves were generated. Using a percentage error determination, optimal pulse parameters for signal to concentration mapping were obtained. Results. The accuracy of the SPGR equation is a function of the chosen MR pulse parameters, particularly the time to repetition (TR) and the flip angle (FA). At all experimental values of TR, increasing FA decreases the ratio between observed and calculated signals. Conversely, for a constant FA, increasing TR increases this ratio. Using optimized pulse parameter sets, it is possible to achieve excellent accuracy (approximately 5%) over a physiologic range of concentration tracer concentrations. Conclusion. Optimal pulse parameter sets exist and their use is essential for deriving accurate signal to concentration curves in quantitative MRI.
原理与目的。准确的信号与示踪剂浓度图对于定量磁共振成像至关重要。本研究的目的是评估并优化扰相梯度回波(SPGR)磁共振序列,以使用钆(Gd-DTPA)作为动力学示踪剂。方法。构建了具有生理范围内钆浓度的水-钆体模。生成了观察到的和计算出的SPGR信号与浓度曲线。通过确定百分比误差,获得了用于信号与浓度映射的最佳脉冲参数。结果。SPGR方程的准确性是所选磁共振脉冲参数的函数,特别是重复时间(TR)和翻转角(FA)。在所有TR的实验值下,增加FA会降低观察到的信号与计算出的信号之间的比率。相反,对于恒定的FA,增加TR会增加该比率。使用优化的脉冲参数集,在示踪剂浓度的生理范围内可以实现优异的准确性(约5%)。结论。存在最佳脉冲参数集,并且它们的使用对于在定量磁共振成像中获得准确的信号与浓度曲线至关重要。