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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Rapid framework for quantitative magnetization transfer imaging with interslice magnetization transfer and dictionary‐driven fitting approaches
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Rapid framework for quantitative magnetization transfer imaging with interslice magnetization transfer and dictionary‐driven fitting approaches

机译:具有交叉线磁化转移的定量磁化转移成像的快速框架和字典驱动的拟合方法

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Purpose To develop a rapid framework for quantitative magnetization transfer (qMT) imaging based on the 2D interslice MT and dictionary‐driven fitting approaches. Methods Sequential balanced steady‐state free precession (bSSFP) scanning was performed on a whole human brain in a total of 12 conditions from six different interslice gaps and two different flip angles. To obtain qMT maps, the acquired 12 datasets were fitted to a dictionary predefined by using Bloch equation simulations based on the two‐pool MT model. The proposed qMT method was compared to the conventional qMT methods, in terms of qMT parameter maps and processing time. Results The proposed method yielded qMT maps similar to those of the conventional method, indicating feasibility of modulating MT saturation frequency and power with the interslice gap and flip angle. The whole‐brain qMT imaging could be completed in 8?min because of the absence of separate MT pulses. The time for processing qMT parameters was significantly reduced through the dictionary‐driven approach; it is 1000 times shorter than that without the dictionary‐driven approach and 3 times shorter than that with the spoiled gradient recalled echo‐qMT method that uses an analytical solution. Conclusion The proposed dictionary–driven interslice qMT imaging provides qMT maps close to those from the conventional method with significantly reduced scan time and postprocessing time, which can make qMT imaging more clinically acceptable.
机译:目的是基于2D Interslice MT和字典驱动的拟合方法开发定量磁化转印(QMT)成像的快速框架。方法在整个人类大脑上进行顺序平衡稳态自由进样(BSSFP)扫描总共12条条件,来自六种不同的差距和两个不同的翻转角度。为了获得QMT映射,所获取的12个数据集拟合到通过基于双池MT模型的Bloch方程模拟预定义的字典。在QMT参数映射和处理时间方面,将所提出的QMT方法与传统的QMT方法进行比较。结果所提出的方法产生类似于传统方法的QMT映射,表明调制MT饱和频率和具有交叉角的功率的可行性。由于没有单独的MT脉冲,全脑QMT成像可以在8?分钟内完成。通过字典驱动的方法,处理QMT参数的时间是显着的;它比没有字典驱动的方法较短的1000倍,并且比使用分析解决方案的宠坏梯度回忆回忆QMT方法短3倍。结论建议的字典驱动的Interslice QMT成像提供靠近传统方法的QMT映射,具有显着降低的扫描时间和后处理时间,这可以使QMT成像更加临床上可接受。

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