首页> 外文期刊>Investigative radiology. >Noninvasive 3-Dimensional H-1-Magnetic Resonance Spectroscopic Imaging of Human Brain Glucose and Neurotransmitter Metabolism Using Deuterium Labeling at 3T Feasibility and Interscanner Reproducibility
【24h】

Noninvasive 3-Dimensional H-1-Magnetic Resonance Spectroscopic Imaging of Human Brain Glucose and Neurotransmitter Metabolism Using Deuterium Labeling at 3T Feasibility and Interscanner Reproducibility

机译:基于氘标记的3T无创三维H-1磁共振波谱成像对人脑葡萄糖和神经递质代谢的可行性和扫描仪间的可重复性

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

ObjectivesNoninvasive, affordable, and reliable mapping of brain glucose metabolism is of critical interest for clinical research and routine application as metabolic impairment is linked to numerous pathologies, for example, cancer, dementia, and depression. A novel approach to map glucose metabolism noninvasively in the human brain has been presented recently on ultrahigh-field magnetic resonance (MR) scanners (>= 7T) using indirect detection of deuterium-labeled glucose and downstream metabolites such as glutamate, glutamine, and lactate. The aim of this study was to demonstrate the feasibility to noninvasively detect deuterium-labeled downstream glucose metabolites indirectly in the human brain via 3-dimensional (3D) proton (H-1) MR spectroscopic imaging on a clinical 3T MR scanner without additional hardware.Materials and MethodsThis prospective, institutional review board-approved study was performed in 7 healthy volunteers (mean age, 31 +/- 4 years, 5 men/2 women) after obtaining written informed consent. After overnight fasting and oral deuterium-labeled glucose administration, 3D metabolic maps were acquired every similar to 4 minutes with similar to 0.24 mL isotropic spatial resolution using real-time motion-, shim-, and frequency-corrected echo-less 3D H-1-MR spectroscopic Imaging on a clinical routine 3T MR system. To test the interscanner reproducibility of the method, subjects were remeasured on a similar 3T MR system. Time courses were analyzed using linear regression and nonparametric statistical tests. Deuterium-labeled glucose and downstream metabolites were detected indirectly via their respective signal decrease in dynamic H-1 MR spectra due to exchange of labeled and unlabeled molecules.ResultsSixty-five minutes after deuterium-labeled glucose administration, glutamate + glutamine (Glx) signal intensities decreased in gray/white matter (GM/WM) by -1.63 +/- 0.3/-1.0 +/- 0.3 mM (-13 +/- 3, P = 0.02/-11 +/- 3, P = 0.02), respectively. A moderate to strong negative correlation between Glx and time was observed in GM/WM (r = -0.64, P < 0.001/r = -0.54, P < 0.001), with 60 +/- 18 (P = 0.02) steeper slopes in GM versus WM, indicating faster metabolic activity. Other nonlabeled metabolites showed no significant changes. Excellent intrasubject repeatability was observed across scanners for static results at the beginning of the measurement (coefficient of variation 4 +/- 4), whereas differences were observed in individual Glx dynamics, presumably owing to physiological variation of glucose metabolism.ConclusionOur approach translates deuterium metabolic imaging to widely available clinical routine MR scanners without specialized hardware, offering a safe, affordable, and versatile (other substances than glucose can be labeled) approach for noninvasive imaging of glucose and neurotransmitter metabolism in the human brain.
机译:目标无创、经济和可靠的脑葡萄糖代谢图谱对于临床研究和常规应用至关重要,因为代谢障碍与许多病理有关,例如癌症、痴呆和抑郁症。最近在超高场磁共振 (MR) 扫描仪 (>= 7T) 上提出了一种无创绘制人脑葡萄糖代谢的新方法,该扫描仪使用间接检测氘标记的葡萄糖和下游代谢物,如谷氨酸、谷氨酰胺和乳酸。本研究的目的是证明在临床 3T MR 扫描仪上通过三维 (3D) 质子 (H-1) MR 光谱成像间接检测人脑中氘标记的下游葡萄糖代谢物的可行性,而无需额外的硬件。材料和方法这项前瞻性、机构审查委员会批准的研究是在获得书面知情同意书后对 7 名健康志愿者(平均年龄,31 +/- 4 岁,5 名男性/2 名女性)进行的。在禁食过夜和口服氘标记葡萄糖给药后,使用实时运动、匀场和频率校正的无回波 3D H-1-MR 光谱成像在临床常规 3T MR 系统上以相似的 0.24 mL 各向同性空间分辨率每 4 分钟获取一次 3D 代谢图。为了测试该方法的扫描仪间可重复性,受试者在类似的 3T MR 系统上重新测量。使用线性回归和非参数统计检验分析时程。由于标记和未标记分子的交换,氘标记的葡萄糖和下游代谢物通过它们在动态 H-1 MR 光谱中各自的信号降低来间接检测。结果氘标记葡萄糖给药后65 min,灰质/白质(GM/WM)谷氨酸+谷氨酰胺(Glx)信号强度分别降低-1.63 +/- 0.3/-1.0 +/- 0.3 mM(-13% +/- 3%,P = 0.02/-11% +/- 3%,P = 0.02)。在 GM/WM 中观察到 Glx 与时间之间存在中度至强的负相关 (r = -0.64,P < 0.001/r = -0.54,P < 0.001),GM 与 WM 相比,GM 的斜率陡峭 60% +/- 18% (P = 0.02),表明代谢活动更快。其他非标记代谢物无显著变化。在测量开始时,在扫描仪中观察到静态结果的出色受试者内可重复性(变异系数 4% +/- 4%),而在单个 Glx 动力学中观察到差异,这可能是由于葡萄糖代谢的生理变化。结论我们的方法将氘代谢成像转化为广泛使用的临床常规MR扫描仪,无需专门的硬件,为人脑葡萄糖和神经递质代谢的无创成像提供了一种安全、经济、通用(可以标记葡萄糖以外的其他物质)的方法。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号