Department of Electronic Science, Fujian Provincial Key Laboratory of Plasma and Magnetic Resonance, Xiamen University, Xiamen 361005, China.
The Center for Brain Imaging Science and Technology, The Collaborative Innovation Center for Diagnosis and The Treatment of Infectious Diseases, Zhejiang University, Hangzhou 310027, China.
Neuroimage. 2022 Nov;263:119645. doi: 10.1016/j.neuroimage.2022.119645. Epub 2022 Sep 22.
Multi-parametric quantitative magnetic resonance imaging (mqMRI) allows the characterization of multiple tissue properties non-invasively and has shown great potential to enhance the sensitivity of MRI measurements. However, real-time mqMRI during dynamic physiological processes or general motions remains challenging. To overcome this bottleneck, we propose a novel mqMRI technique based on multiple overlapping-echo detachment (MOLED) imaging, termed MQMOLED, to enable mqMRI in a single shot. In the data acquisition of MQMOLED, multiple MR echo signals with different multi-parametric weightings and phase modulations are generated and acquired in the same k-space. The k-space data is Fourier transformed and fed into a well-trained neural network for the reconstruction of multi-parametric maps. We demonstrated the accuracy and repeatability of MQMOLED in simultaneous mapping apparent proton density (APD) and any two parameters among T, T*, and apparent diffusion coefficient (ADC) in 130-170 ms. The abundant information delivered by the multiple overlapping-echo signals in MQMOLED makes the technique potentially robust to system imperfections, such as inhomogeneity of static magnetic field or radiofrequency field. Benefitting from the single-shot feature, MQMOLED exhibits a strong motion tolerance to the continuous movements of subjects. For the first time, it captured the synchronous changes of ADC, T, and T-weighted APD in contrast-enhanced perfusion imaging on patients with brain tumors, providing additional information about vascular density to the hemodynamic parametric maps. We expect that MQMOLED would promote the development of mqMRI technology and greatly benefit the applications of mqMRI, including therapeutics and analysis of metabolic/functional processes.
多参数定量磁共振成像(mqMRI)允许无创地对多种组织特性进行特征描述,并显示出极大地提高 MRI 测量灵敏度的潜力。然而,在动态生理过程或一般运动中实时 mqMRI 仍然具有挑战性。为了克服这一瓶颈,我们提出了一种基于多重叠回波分离(MOLED)成像的新型 mqMRI 技术,称为 MQMOLED,可在单次拍摄中实现 mqMRI。在 MQMOLED 的数据采集过程中,会生成并在同一 k 空间中采集具有不同多参数权重和相位调制的多个 MR 回波信号。k 空间数据经过傅里叶变换,并输入到经过良好训练的神经网络中,以重建多参数图。我们证明了 MQMOLED 在 130-170ms 内同时映射表观质子密度(APD)和 T、T* 和表观扩散系数(ADC)中的任意两个参数的准确性和可重复性。MQMOLED 中的多个重叠回波信号提供的丰富信息使该技术具有对系统不完善(例如静态磁场或射频场的不均匀性)的潜在稳健性。受益于单次拍摄的特点,MQMOLED 对受试者的连续运动具有很强的运动容忍度。这是首次在脑肿瘤患者的对比增强灌注成像中捕获 ADC、T 和 T 加权 APD 的同步变化,为血流动力学参数图提供了关于血管密度的附加信息。我们预计 MQMOLED 将促进 mqMRI 技术的发展,并极大地受益于 mqMRI 的应用,包括治疗和代谢/功能过程的分析。