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一分钟全脑磁化传递率成像,具有内在 B 校正。

One-minute whole-brain magnetization transfer ratio imaging with intrinsic B -correction.

机构信息

Division of Radiological Physics, Department of Radiology, University Hospital Basel, Basel, Switzerland.

Department of Biomedical Engineering, University of Basel, Basel, Switzerland.

出版信息

Magn Reson Med. 2021 May;85(5):2686-2695. doi: 10.1002/mrm.28618. Epub 2020 Dec 8.

Abstract

PURPOSE

Magnetization transfer ratio (MTR) histograms are used widely for the assessment of diffuse pathological changes in the brain. For broad clinical application, MTR scans should not only be fast, but confounding factors should also be minimized for high reproducibility. To this end, a 1-minute whole-brain spiral MTR method with intrinsic B -field correction is introduced.

METHODS

A spiral multislice spoiled gradient-echo sequence with adaptable magnetization-transfer saturation pulses (angle β) is proposed. After a low-resolution single-shot spiral readout and a dummy preparation period, high-resolution images are acquired using an interleaved spiral readout. For whole-brain MTR imaging, 50 interleaved slices with three different magnetization-transfer contrasts (β = 0°, 350°, and 550°) together with an intrinsic B -field map are recorded in 58.5 seconds on a clinical 3T system. From the three contrasts, two sets of MTR images are derived and used for subsequent B correction, assuming a linear dependency on β. For validation, a binary spin bath model is used.

RESULTS

For the proposed B -correction scheme, numerical simulations indicate for brain tissue a decrease of about a factor of 10 for the B -related bias on MTR. As a result, following B correction, MTR differences in gray and white matter become markedly accentuated, and the reproducibility of MTR histograms from scan-rescan experiments is improved. Furthermore, B -corrected MTR histograms show a lower variability for age-matched normal-appearing brain tissue.

CONCLUSION

From its speed and offering intrinsic B correction, the proposed method shows excellent prospects for clinical studies that explore magnetization-transfer effects based on MTR histogram analysis.

摘要

目的

磁化传递比(MTR)直方图广泛用于评估大脑的弥漫性病变。为了广泛的临床应用,MTR 扫描不仅要快速,而且要尽量减少混杂因素以提高重现性。为此,引入了一种具有内在 B 场校正的 1 分钟全脑螺旋 MTR 方法。

方法

提出了一种具有自适应磁化传递饱和脉冲(角β)的螺旋多层扰相梯度回波序列。在低分辨率单次螺旋读出和预备期后,使用交错螺旋读出获取高分辨率图像。对于全脑 MTR 成像,在临床 3T 系统上,在 58.5 秒内记录 50 个具有三个不同磁化传递对比度(β=0°、350°和 550°)的交错切片和一个内在 B 场图。从三个对比度中,导出了两组 MTR 图像,并用于后续的 B 校正,假设与β呈线性关系。为了验证,使用了二进制自旋浴模型。

结果

对于所提出的 B 校正方案,数值模拟表明对于脑组织,B 相关的 MTR 偏倚降低了约 10 倍。因此,在 B 校正后,灰质和白质之间的 MTR 差异明显增强,并且扫描-扫描实验中 MTR 直方图的重现性得到改善。此外,校正后的 MTR 直方图显示出与年龄匹配的正常脑组织之间更低的变异性。

结论

从速度和提供内在 B 校正的角度来看,该方法为基于 MTR 直方图分析探索磁化传递效应的临床研究提供了广阔的前景。

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