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使用信号衰减分区的光谱成像技术(RAPID-SI)减少采集时间。

Reduction of Acquisition time using Partition of the sIgnal Decay in Spectroscopic Imaging technique (RAPID-SI).

机构信息

Department of Radiology and Nuclear Medicine, University of Ghent, Gent, BE.

Robarts Research Institute, University of Western Ontario, London, Ontario Canada.

出版信息

PLoS One. 2018 Nov 7;13(11):e0207015. doi: 10.1371/journal.pone.0207015. eCollection 2018.

Abstract

To overcome long acquisition times of Chemical Shift Imaging (CSI), a new Magnetic Resonance Spectroscopic Imaging (MRSI) technique called Reduction of Acquisition time by Partition of the sIgnal Decay in Spectroscopic Imaging (RAPID-SI) using blipped phase encoding gradients inserted during signal acquisition was developed. To validate the results using RAPID-SI and to demonstrate its usefulness in terms of acquisition time and data quantification; simulations, phantom and in vivo studies were conducted, and the results were compared to standard CSI. The method was based upon the partition of a magnetic resonance spectroscopy (MRS) signal into sequential sub-signals encoded using blipped phase encoding gradients inserted during signal acquisition at a constant time interval. The RAPID-SI technique was implemented on a clinical 3 T Siemens scanner to demonstrate its clinical utility. Acceleration of data collection was performed by inserting R (R = acceleration factor) blipped gradients along a given spatial direction during data acquisition. Compared to CSI, RAPID-SI reduced acquisition time by the acceleration factor R. For example, a 2D 16x16 data set acquired in about 17 min with CSI, was reduced to approximately 2 min with the RAPID-SI (R = 8). While the SNR of the acquired RAPID-SI signal was lower compared to CSI by approximately the factor √R, it can be improved after data pre-processing and reconstruction. Compared to CSI, RAPID-SI reduces acquisition time, while preserving metabolites information. Furthermore, the method is flexible and could be combined with other acceleration methods such as Parallel Imaging.

摘要

为了克服化学位移成像(CSI)的采集时间长的问题,开发了一种新的磁共振波谱成像(MRSI)技术,称为通过在信号采集期间插入的相位编码梯度的信号衰减分区来减少采集时间(RAPID-SI)。为了使用 RAPID-SI 验证结果,并证明其在采集时间和数据量化方面的有用性;进行了模拟、体模和体内研究,并将结果与标准 CSI 进行了比较。该方法基于将磁共振波谱(MRS)信号分割成使用在恒定时间间隔期间在信号采集期间插入的相位编码梯度编码的顺序子信号。RAPID-SI 技术在临床 3T 西门子扫描仪上实现,以证明其临床实用性。通过在数据采集期间在给定空间方向上插入 R(R = 加速因子)相位编码梯度来加速数据收集。与 CSI 相比,RAPID-SI 通过加速因子 R 减少了采集时间。例如,使用 CSI 采集的大约 17 分钟的 2D 16x16 数据集减少到大约 2 分钟(R = 8)。虽然与 CSI 相比,所采集的 RAPID-SI 信号的 SNR 大约降低了因子√R,但可以在数据预处理和重建后进行改善。与 CSI 相比,RAPID-SI 减少了采集时间,同时保留代谢物信息。此外,该方法具有灵活性,可以与并行成像等其他加速方法结合使用。

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