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通过 T 和交错速度编码来代谢氧气:一种快速定量全脑氧代谢率的方法。

Metabolism of oxygen via T and interleaved velocity encoding: A rapid method to quantify whole-brain cerebral metabolic rate of oxygen.

机构信息

Laboratory for Structural Physiologic and Functional Imaging, Department of Radiology, University of Pennsylvania, Philadelphia, PA, USA.

出版信息

Magn Reson Med. 2022 Sep;88(3):1229-1243. doi: 10.1002/mrm.29299. Epub 2022 Jun 14.

Abstract

PURPOSE

Cerebral metabolic rate of oxygen (CMRO ) is an important biomarker of brain function. Key physiological parameters required to quantify CMRO include blood flow rate in the feeding arteries and venous oxygen saturation (SvO ) in the draining vein. Here, a pulse sequence, metabolism of oxygen via T and interleaved velocity encoding (MOTIVE), was developed to measure both parameters simultaneously and enable CMRO quantification in a single pass.

METHODS

The MOTIVE sequence interleaves a phase-contrast module between a nonselective saturation and a background-suppressed T -prepared EPI readout (BGS-EPI) to measure T of blood water protons and cerebral blood flow in 20 s or less. The MOTIVE and standalone BGS-EPI sequences were compared against TRUST ("T relaxation under spin tagging") in the brain in healthy subjects (N = 24). Variants of MOTIVE to enhance resolution or shorten scan time were explored. Intrasession and intersession reproducibility studies were performed.

RESULTS

MOTIVE experiments yielded an average SvO of 61 ± 6% in the superior sagittal sinus of the brain and an average cerebral blood flow of 56 ± 10 ml/min/100 g. The bias in SvO of MOTIVE and BGS-EPI to TRUST was +2 ± 4% and +1 ± 3%, respectively. The bias in cerebral blood flow of MOTIVE to Cartesian phase-contrast reference was +1 ± 6 ml/min/100 g.

CONCLUSIONS

The MOTIVE sequence is an advance over existing T -based oximetric methods. It does not require a control image and simultaneously measures SvO and flow velocity. The measurements agree well with TRUST and reference phase-contrast sequences. This noninvasive technique enables CMRO quantification in under 20 s and is reproducible for in vivo applications.

摘要

目的

脑氧代谢率(CMRO )是脑功能的重要生物标志物。量化 CMRO 所需的关键生理参数包括供血动脉的血流速度和引流静脉中的血氧饱和度(SvO )。在这里,开发了一种脉冲序列,即通过 T 和交错速度编码(MOTIVE)代谢氧,以同时测量这两个参数,并在单次通过中实现 CMRO 的量化。

方法

MOTIVE 序列在非选择性饱和和背景抑制 T 预备 EPI 读出(BGS-EPI)之间交错相位对比模块,以在 20 秒或更短的时间内测量血水中质子的 T 和脑血流。在健康受试者(N = 24)中,将 MOTIVE 序列与独立的 BGS-EPI 序列与 TRUST(“自旋标记下的 T 弛豫”)进行了比较。还探索了增强分辨率或缩短扫描时间的 MOTIVE 变体。进行了单次扫描和多次扫描的可重复性研究。

结果

MOTIVE 实验得出大脑上矢状窦的平均 SvO 为 61 ± 6%,平均脑血流为 56 ± 10 ml/min/100 g。MOTIVE 和 BGS-EPI 与 TRUST 的 SvO 偏差分别为+2 ± 4%和+1 ± 3%。MOTIVE 与笛卡尔相位对比参考的脑血流偏差为+1 ± 6 ml/min/100 g。

结论

MOTIVE 序列是对现有基于 T 的血氧测量方法的改进。它不需要对照图像,并且可以同时测量 SvO 和流速。测量结果与 TRUST 和参考相位对比序列吻合良好。这种非侵入性技术可在 20 秒内实现 CMRO 的量化,并且可用于体内应用的可重复性。

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