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3T 全脑覆盖的远场质子磁共振波谱成像。

Downfield proton MRSI with whole-brain coverage at 3T.

机构信息

Russell H. Morgan Department of Radiology and Radiological Science, The Johns Hopkins University School of Medicine, Baltimore, Maryland, USA.

Philips Healthcare, Best, Netherlands.

出版信息

Magn Reson Med. 2023 Sep;90(3):814-822. doi: 10.1002/mrm.29706. Epub 2023 May 30.

Abstract

PURPOSE

To develop a 3D downfield (DF) MRSI protocol with whole brain coverage and post-processing pipeline for creation of metabolite maps.

METHODS

A 3D, circularly phase-encoded version of the previously developed 2D DF MRSI sequence with spectral-spatial excitation and frequency selective refocusing was implemented and tested in five healthy volunteers at 3T. The DF metabolite maps with a nominal spatial resolution of 0.7 cm were recorded in eight slices at 3T in a scan time of 22 m 40 s. An MRSI post-processing pipeline was developed to create DF metabolite maps. Metabolite concentrations and uncertainty estimates were compared between region differences for nine DF peaks.

RESULTS

LCModel analysis showed Cramer Rao lower bounds average values of 3%-4% for protein amide resonances in the three selected regions (anterior cingulate, dorsolateral prefrontal cortex, and centrum semiovale); Cramer Rao lower bounds were somewhat higher for individual peaks but for the most part were less than 20%. While DF concentration maps were visually quite homogeneous throughout the brain, general linear regression analysis corrected for multiple comparisons found significant differences between centrum semiovale and dorsolateral prefrontal cortex for peaks at 7.09 ppm (p = 0.014), 7.90 ppm (p = 0.009), 8.18 ppm (p = 0.009), combined amides (p = 0.009), and between anterior cingulate and dorsolateral prefrontal cortex for the 7.30 ppm peak (p = 0.020). Cramer Rao lower bounds values were not significantly different between brain regions for any of the DF peaks.

CONCLUSION

The 3D DF MRSI of the human brain at 3T with wide spatial coverage for the mapping of exchangeable amide and other resonances is feasible at a nominal spatial resolution of 0.7 cm .

摘要

目的

开发一种具有全脑覆盖范围的 3D 下场区(DF)MRSI 协议和后处理管道,用于创建代谢物图谱。

方法

在五名健康志愿者中,在 3T 上实施并测试了以前开发的二维 DF MRSI 序列的 3D、圆形相位编码版本,该序列具有光谱空间激发和频率选择性重聚焦。在 3T 上以 8 个切片记录具有标称空间分辨率为 0.7cm 的 DF 代谢物图谱,扫描时间为 22m40s。开发了一种 MRSI 后处理管道来创建 DF 代谢物图谱。比较了 9 个 DF 峰的区域差异之间的代谢物浓度和不确定性估计。

结果

LCModel 分析显示,在三个选定区域(前扣带回、背外侧前额叶皮层和半卵圆中心)的蛋白酰胺共振的 Cramer Rao 下限平均值为 3%-4%;个别峰的 Cramer Rao 下限稍高,但大多数峰的下限低于 20%。虽然 DF 浓度图在整个大脑中看起来非常均匀,但针对多重比较的一般线性回归分析发现,半卵圆中心和背外侧前额叶皮层之间的差异在 7.09ppm(p=0.014)、7.90ppm(p=0.009)、8.18ppm(p=0.009)、酰胺峰(p=0.009)和前扣带回和背外侧前额叶皮层之间的 7.30ppm 峰(p=0.020)。对于任何 DF 峰,大脑区域之间的 Cramer Rao 下限值均无显着差异。

结论

在 3T 下对具有交换酰胺和其他共振映射的广泛空间覆盖范围的人脑进行 3D DF MRSI 是可行的,标称空间分辨率为 0.7cm。

相似文献

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Downfield proton MRSI with whole-brain coverage at 3T.3T 全脑覆盖的远场质子磁共振波谱成像。
Magn Reson Med. 2023 Sep;90(3):814-822. doi: 10.1002/mrm.29706. Epub 2023 May 30.
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High-field downfield MR spectroscopic imaging in the human brain.高场低场磁共振波谱成像在人脑。
Magn Reson Med. 2024 Sep;92(3):890-899. doi: 10.1002/mrm.30075. Epub 2024 Mar 12.

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