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Exploration of noninvasive mapping of brain pH with 31P magnetic resonance spectroscopy

机译:脑pH与 P磁共振光谱法的非侵袭性映射探索

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Previous study of brain “potential of hydrogen” (pH) was conducted in single-voxel 31P magnetic resonance (MR) spectroscopy. In this study, we explored the feasibility of mapping brain pH by using multivoxel 31P MR spectroscopy. Firstly, phantom studies were carried out with a GE 3T MR system using 2D PRESSCSI sequence. TR was 1000 msec and TE 144 msec with 128 scan averages. Then two healthy volunteers were studied with same parameters. Data were processed offline using the SAGE/IDL program. Multivoxel spectra were analyzed and brain pH values were calculated with a standard equation. Peaks of metabolite were not homogeneous in phantom studies at this moment. There was noise for multivoxel 31P spectra in volunteer studies. However, phosphomonoester peak, inorganic phosphate peak, phosphodiester peak, and phosphocreatine peak can be identified. Preliminary brain pH map was generated in the volunteers. In our opinion, it is feasible to map brain pH with improved multivoxel 31P MR spectroscopy.
机译:先前对脑“氢气潜力”(pH)的研究进行在单voxel 31/11 p磁共振(MR)光谱中进行。在这项研究中,我们通过使用多种多变素 31 / sup> p MR光谱来探讨映射脑pH的可行性。首先,使用2D压织序列用GE 3T MR系统进行幻影研究。 TR为1000毫秒,TE 144 MSEC,具有128个扫描平均值。然后用相同的参数研究了两个健康的志愿者。使用SAGE / IDL程序脱机处理数据。分析多种偏移光谱,用标准方程计算脑pH值。此时,代谢物的峰在幻影研究中并不均匀。志愿者研究中有多种多变素 31/11的噪音。然而,可以鉴定磷酸酯峰,无机磷酸峰,磷酸二峰峰和磷酸峰峰。在志愿者中产生初步脑pH图。在我们看来,将脑pH与改进的多种多变素 31 P mR光谱进行映射是可行的。

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