School of Medical Technology, Beijing Institute of Technology, Beijing, China.
Center for Biomedical Imaging Research, Department of Biomedical Engineering, School of Medicine, Tsinghua University, Beijing, China.
Magn Reson Med. 2024 Sep;92(3):1064-1078. doi: 10.1002/mrm.30124. Epub 2024 May 10.
This study aims to develop and evaluate a novel cardiovascular MR sequence, MyoFold, designed for the simultaneous quantifications of myocardial tissue composition and wall motion.
MyoFold is designed as a 2D single breathing-holding sequence, integrating joint T/T mapping and cine imaging. The sequence uses a 2-fold accelerated balanced SSFP (bSSFP) for data readout and incorporates electrocardiogram synchronization to align with the cardiac cycle. MyoFold initially acquires six single-shot inversion-recovery images, completed during the diastole of six successive heartbeats. T preparation (T-prep) is applied to introduce T weightings for the last three images. Subsequently, over the following six heartbeats, segmented bSSFP is performed for the movie of the entire cardiac cycle, synchronized with an electrocardiogram. A neural network trained using numerical simulations of MyoFold is used for T and T calculations. MyoFold was validated through phantom and in vivo experiments, with comparisons made against MOLLI, SASHA, T-prep bSSFP, and the conventional cine.
In phantom studies, MyoFold exhibited a 10% overestimation in T measurements, whereas T measurements demonstrated high accuracy. In vivo experiments revealed that MyoFold T had comparable accuracy to SASHA and precision similar to MOLLI. MyoFold demonstrated good agreement with T-prep bSSFP in myocardial T measurements. No significant differences were observed in the quantification of left-ventricle wall thickness and function between MyoFold and the conventional cine.
MyoFold presents as a rapid, simple, and multitasking approach for quantitative cardiovascular MR examinations, offering simultaneous assessment of tissue composition and wall motion. The sequence's multitasking capabilities make it a promising tool for comprehensive cardiac evaluations in clinical settings.
本研究旨在开发和评估一种新颖的心血管磁共振(CMR)序列 MyoFold,用于心肌组织成分和壁运动的同时定量评估。
MyoFold 设计为二维单次屏气序列,集成联合 T/T 映射和电影成像。该序列使用 2 倍加速的平衡稳态自由进动(bSSFP)进行数据读取,并结合心电图同步以与心脏周期对齐。MyoFold 最初获取六个单-shot 反转恢复图像,在连续六个心跳的舒张期完成。T 准备(T-prep)应用于最后三个图像以引入 T 权重。随后,在接下来的六个心跳中,对整个心动周期的电影进行分段 bSSFP,与心电图同步进行。使用 MyoFold 的数值模拟训练的神经网络用于 T 和 T 的计算。通过体模和体内实验对 MyoFold 进行验证,并与 MOLLI、SASHA、T-prep bSSFP 和常规电影进行比较。
在体模研究中,MyoFold 在 T 测量中存在 10%的高估,而 T 测量具有高精度。体内实验表明,MyoFold T 与 SASHA 具有可比性,与 MOLLI 具有相似的精度。MyoFold 在心肌 T 测量方面与 T-prep bSSFP 具有良好的一致性。MyoFold 与常规电影在左心室壁厚度和功能的定量方面没有显著差异。
MyoFold 是一种快速、简单和多功能的定量心血管 CMR 检查方法,可同时评估组织成分和壁运动。该序列的多功能性使其成为临床评估综合心脏功能的有前途的工具。