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Metabolic properties in stroked rats revealed by relaxation-enhanced magnetic resonance spectroscopy at ultrahigh fields

机译:超高磁场下弛豫增强磁共振波谱显示中风大鼠的代谢特性

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摘要

H-1 magnetic resonance spectroscopy (MRS) yields site-specific signatures that directly report metabolic concentrations, biochemistry and kinetics-provided spectral sensitivity and quality are sufficient. Here, an enabling relaxation-enhanced (RE) MRS approach is demonstrated that by combining highly selective spectral excitations with operation at very high magnetic fields, delivers spectra exhibiting signal-to-noise ratios >50:1 in under 6s for similar to 5 x 5 x 5 (mm)(3) voxels, with flat baselines and no interference from water. With this spectral quality, MRS was used to interrogate a number of metabolic properties in stroked rat models. Metabolic confinements imposed by randomly oriented micro-architectures were detected and found to change upon ischaemia; intensities of downfield resonances were found to be selectively altered in stroked hemispheres; and longitudinal relaxation time of lactic acid was found to increase by over 50% its control value as early as 3-h post ischaemia, paralleling the onset of cytotoxic oedema. These results demonstrate potential of H-1 MRS at ultrahigh fields.
机译:H-1磁共振波谱(MRS)产生特定于位置的特征,可以直接报告代谢浓度,生物化学和动力学提供的光谱灵敏度和质量就足够了。在此,我们证明了一种可行的弛豫增强(RE)MRS方法,通过将高度选择性的光谱激发与在非常高的磁场下运行相结合,可以在6 s内提供显示出信噪比> 50:1的光谱,类似于5 x 5 x 5(mm)(3)体素,基线平坦且不受水干扰。凭借这种光谱质量,MRS被用于询问卒中大鼠模型中的许多代谢特性。检测到由随机定向的微结构施加的代谢限制,并发现在缺血时会发生变化。发现在中风的半球中场共振的强度有选择地改变。早在缺血后3小时,发现乳酸的纵向松弛时间增加了其控制值的50%以上,这与细胞毒性水肿的发作平行。这些结果证明了H-1 MRS在超高磁场中的潜力。

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