Zi Ruoxun, Edelman Robert R, Maier Christoph, Keerthivasan Mahesh, Lattanzi Riccardo, Sodickson Daniel K, Block Kai Tobias
From the Bernard and Irene Schwartz Center for Biosmedical Imaging, Department of Radiology, New York University Grossman School of Medicine, New York, NY (R.Z., C.M., R.L., D.K.S., K.T.B.); Center for Advanced Imaging Innovation and Research (CAIR), Department of Radiology, New York University Grossman School of Medicine, New York, NY (R.Z., C.M., R.L., D.K.S., K.T.B.); Radiology, NorthShore University HealthSystem, Evanston, IL (R.R.E.); Feinberg School of Medicine, Northwestern University, Evanston, IL (R.R.E.); and Siemens Medical Solutions, New York, NY (M.K.).
Invest Radiol. 2025 Apr 7. doi: 10.1097/RLI.0000000000001185.
Magnetization-prepared rapid gradient-echo (MP-RAGE) sequences are routinely acquired for brain exams, providing high conspicuity for enhancing lesions. Vessels, however, also appear bright, which can complicate the detection of small lesions. T1RESS (T1 relaxation-enhanced steady-state) sequences have been proposed as an alternative to MP-RAGE, offering improved lesion conspicuity and suppression of blood vessels. This work aims to evaluate the performance of radial T1RESS variants for motion-robust contrast-enhanced brain MRI.
Radial stack-of-stars sampling was implemented for steady-state free-precession-based rapid T1RESS acquisition with saturation recovery preparation. Three variants were developed using a balanced steady-state free-precession readout (bT1RESS), an unbalanced fast imaging steady precession (FISP) readout (uT1RESS-FISP), and an unbalanced reversed FISP readout (uT1RESS-PSIF). Image contrast was evaluated in numerical simulations and phantom experiments. The motion robustness of radial T1RESS was demonstrated with a motion phantom. Four patients and six healthy volunteers were scanned at 3 T and 0.55 T. Extensions were developed combining T1RESS with GRASP for dynamic imaging, with GRAPPA for accelerated scans, and with Dixon for fat/water separation.
In simulations and phantom scans, uT1RESS-FISP provided higher signal intensity for regions with lower T1 values (<500 ms) compared with MP-RAGE. In motion experiments, radial uT1RESS-FISP showed fewer artifacts than MP-RAGE and Cartesian uT1RESS-FISP. In patients, both unbalanced uT1RESS variants provided higher lesion conspicuity than MP-RAGE. Blood vessels appeared bright with MP-RAGE, gray with uT1RESS-FISP, and dark with uT1RESS-PSIF. At 0.55 T, bT1RESS provided high signal-to-noise ratio T1-weighted images without banding artifacts. Lastly, dynamic T1RESS images with a temporal resolution of 10.14 seconds/frame were generated using the GRASP algorithm.
Radial T1RESS sequences offer improved lesion conspicuity and motion robustness and enable dynamic imaging for contrast-enhanced brain MRI. Both uT1RESS variants showed higher tumor-to-brain contrast than MP-RAGE and may find application as alternative techniques for imaging uncooperative patients with small brain lesions.
磁化准备快速梯度回波(MP-RAGE)序列常用于脑部检查,能使强化病变显示得更清晰。然而,血管也会呈现高信号,这可能会使小病变的检测变得复杂。T1RESS(T1弛豫增强稳态)序列已被提议作为MP-RAGE的替代方案,它能提高病变的清晰度并抑制血管信号。本研究旨在评估径向T1RESS变体在运动稳健性对比增强脑部MRI中的性能。
采用径向星状堆叠采样进行基于稳态自由进动的快速T1RESS采集,并进行饱和恢复准备。使用平衡稳态自由进动读出(bT1RESS)、非平衡快速成像稳态进动(FISP)读出(uT1RESS-FISP)和非平衡反向FISP读出(uT1RESS-PSIF)开发了三种变体。在数值模拟和体模实验中评估图像对比度。使用运动体模展示了径向T1RESS的运动稳健性。对4例患者和6名健康志愿者进行了3T和0.55T的扫描。开发了将T1RESS与GRASP相结合用于动态成像、与GRAPPA相结合用于加速扫描以及与Dixon相结合用于脂肪/水分离的扩展技术。
在模拟和体模扫描中,与MP-RAGE相比,uT1RESS-FISP在T1值较低(<500ms)的区域提供了更高的信号强度。在运动实验中,径向uT1RESS-FISP比MP-RAGE和笛卡尔uT1RESS-FISP产生的伪影更少。在患者中,两种非平衡uT1RESS变体都比MP-RAGE提供了更高的病变清晰度。MP-RAGE下血管呈高信号,uT1RESS-FISP下呈灰色,uT1RESS-PSIF下呈黑色。在0.55T时,bT1RESS提供了无带状伪影的高信噪比T1加权图像。最后,使用GRASP算法生成了时间分辨率为10.14秒/帧的动态T1RESS图像。
径向T1RESS序列提高了病变清晰度和运动稳健性,并能实现对比增强脑部MRI的动态成像。两种uT1RESS变体都显示出比MP-RAGE更高的肿瘤与脑对比度,可能作为对患有小脑病变的不合作患者进行成像的替代技术。