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临床常规获取协议 3T 下人类大脑的 3D 弛豫补偿 APT 和 rNOE CEST-MRI

Clinical routine acquisition protocol for 3D relaxation-compensated APT and rNOE CEST-MRI of the human brain at 3T.

机构信息

Department of Medical Physics in Radiology, German Cancer Research Center (DKFZ), Heidelberg, Germany.

Department of Radiology, German Cancer Research Center (DKFZ), Heidelberg, Germany.

出版信息

Magn Reson Med. 2021 Jul;86(1):393-404. doi: 10.1002/mrm.28699. Epub 2021 Feb 14.

Abstract

PURPOSE

The value of relaxation-compensated amide proton transfer (APT) and relayed nuclear Overhauser effect (rNOE) chemical exchange saturation transfer (CEST)-MRI has already been demonstrated in various neuro-oncological clinical applications. Recently, we translated the approach from 7T to a clinically relevant magnetic field strength of 3T. However, the overall acquisition time was still too long for a broad application in the clinical setting. The aim of this study was to establish a shorter acquisition protocol whilst maintaining the contrast behavior and reproducibility.

METHODS

Ten patients with glioblastoma were examined using the previous state-of-the-art acquisition protocol at 3T. The acquired spectral data were retrospectively reduced to find the minimal amount of required information that allows obtaining the same contrast behavior. To further reduce the acquisition time, also the image readout was accelerated and the pre-saturation parameters were further optimized.

RESULTS

In total, the overall acquisition time could be reduced from 19 min to under 7 min. One key finding was that, when evaluated by the relaxation-compensated inverse metric, a contrast correction for B -field inhomogeneities at 3T can also be achieved reliably with CEST data at only one B value. In contrast, a 1-point B -correction was not sufficient for the common linear difference evaluation. The reproducibility of the new clinical routine acquisition protocol was similar to the previous state-of-the-art protocol with limits of agreement below 20%.

CONCLUSIONS

The substantial reduction in acquisition time by about 64% now allows the application of 3D relaxation-compensated APT and rNOE CEST-MRI for examinations of the human brain at 3T in clinical routine.

摘要

目的

弛豫补偿酰胺质子转移(APT)和接力核 Overhauser 效应(rNOE)化学交换饱和传递(CEST)MRI 的价值已经在各种神经肿瘤学的临床应用中得到了证实。最近,我们将该方法从 7T 转化为临床相关的 3T 磁场强度。然而,总的采集时间仍然太长,无法在临床环境中广泛应用。本研究的目的是建立一个更短的采集方案,同时保持对比度行为和可重复性。

方法

10 名胶质母细胞瘤患者在 3T 下使用以前的最先进的采集方案进行了检查。回顾性地减少所获得的光谱数据,以找到允许获得相同对比度行为的最小信息量。为了进一步缩短采集时间,还加速了图像读出,并进一步优化了预饱和参数。

结果

总的来说,总采集时间可以从 19 分钟减少到不到 7 分钟。一个关键的发现是,当通过弛豫补偿逆指标进行评估时,仅在一个 B 值下,CEST 数据也可以可靠地实现 3T 中的 B 场不均匀性的对比度校正。相比之下,1 点 B 校正对于常见的线性差异评估是不够的。新的临床常规采集方案的可重复性与以前的最先进方案相似,一致性界限低于 20%。

结论

通过大约 64%的采集时间的大幅减少,现在可以在临床常规中应用 3D 弛豫补偿 APT 和 rNOE CEST-MRI 对人脑进行检查。

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