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利用质子通道上的容积发射和仅接收表面线圈,对大鼠脑进行体内质子观察的碳编辑(POCE) C 磁共振波谱研究。

In vivo proton observed carbon edited (POCE) C magnetic resonance spectroscopy of the rat brain using a volumetric transmitter and receive-only surface coil on the proton channel.

机构信息

Department of Biomedical Engineering, McGill University, Montreal, QC, Canada.

Brain Imaging Centre, Douglas Mental Health University Institute, McGill University, Montreal, QC, Canada.

出版信息

Magn Reson Med. 2018 Feb;79(2):628-635. doi: 10.1002/mrm.26751. Epub 2017 May 12.

Abstract

PURPOSE

In vivo carbon-13 ( C) MR spectroscopy (MRS) is capable of measuring energy metabolism and neuroenergetics, noninvasively in the brain. Indirect ( H-[ C]) MRS provides sensitivity benefits compared with direct C methods, and normally includes a H surface coil for both localization and signal reception. The aim was to develop a coil platform with homogenous B1+ and use short conventional pulses for short echo time proton observed carbon edited (POCE) MRS.

METHODS

A H-[ C] MRS coil platform was designed with a volumetric resonator for H transmit, and surface coils for H reception and C transmission. The Rx-only H surface coil nullifies the requirement for a T/R switch before the H preamplifier; the highpass filter and preamplifier can be placed proximal to the coil, thus minimizing sensitivity losses inherent with POCE-MRS systems described in the literature. The coil platform was evaluated with a PRESS-POCE sequence (TE = 12.6 ms) on a rat model.

RESULTS

The coil provided excellent localization, uniform spin nutation, and sensitivity. C labeling of Glu-H4 and Glx-H3 peaks, and the Glx-H2 peaks were observed approximately 13 and 21 min following the infusion of 1- C glucose, respectively.

CONCLUSION

A convenient and sensitive platform to study energy metabolism and neurotransmitter cycling is presented. Magn Reson Med 79:628-635, 2018. © 2017 International Society for Magnetic Resonance in Medicine.

摘要

目的

活体 13C(C)磁共振波谱(MRS)能够无创地测量大脑中的能量代谢和神经能量代谢。间接(H-[C])MRS 与直接 C 方法相比具有更高的灵敏度优势,通常包括用于定位和信号接收的 H 表面线圈。目的是开发具有均匀 B1+的线圈平台,并使用短的常规脉冲进行短回波时间质子观察的碳编辑(POCE)MRS。

方法

设计了一种 H-[C]MRS 线圈平台,该平台具有用于 H 发射的体积谐振器,以及用于 H 接收和 C 发射的表面线圈。仅用于接收的 H 表面线圈消除了在 H 前置放大器之前使用 T/R 开关的要求;高通滤波器和前置放大器可以放置在靠近线圈的位置,从而最大限度地减少文献中描述的 POCE-MRS 系统固有的灵敏度损失。该线圈平台在大鼠模型上使用 PRESS-POCE 序列(TE=12.6 ms)进行了评估。

结果

该线圈提供了出色的定位、均匀的自旋扭转和灵敏度。在输注 1-[C]葡萄糖后约 13 和 21 分钟分别观察到 Glu-H4 和 Glx-H3 峰以及 Glx-H2 峰的 C 标记。

结论

提出了一种方便且灵敏的平台,用于研究能量代谢和神经递质循环。磁共振医学 79:628-635, 2018。© 2017 国际磁共振学会。

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