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Cerebral phosphoester signals measured by 31 P magnetic resonance spectroscopy at 3 and 7 Tesla

机译:在3和7特斯拉的31个P磁共振光谱测量的脑磷酸酯信号

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Abnormal cell membrane metabolism is associated with many neuropsychiatric disorders. Free phosphomonoesters and phosphodiesters, which can be detected by in vivo 31 P magnetic resonance spectroscopy (MRS), are important cell membrane building blocks. However, the quantification of phosphoesters has been highly controversial even in healthy individuals due to overlapping signals from macromolecule membrane phospholipids (MP). In this study, high signal-to-noise ratio (SNR) cerebral 31 P MRS spectra were acquired from healthy volunteers at both 3 and 7 Tesla. Our results indicated that, with minimal spectral interference from MP, the [phosphocreatine (PCr)]/[phosphocholine (PC) + glycerophosphocholine (GPC)] ratio measured at 7 Tesla agreed with its value expected from biochemical constraints. In contrast, the 3 Tesla [PCr]/[PC+GPC] ratio obtained using standard spectral fitting procedures was markedly smaller than the 7 Tesla ratio and than the expected value. The analysis suggests that the commonly used spectral model for MP may fail to capture its complex spectral features at 3 Tesla, and that additional prior knowledge is necessary to reliably quantify the phosphoester signals at low magnetic field strengths when spectral overlapping is significant.
机译:细胞膜代谢异常与许多神经精神障碍有关。可以通过体内31p磁共振光谱(MRS)来检测的游离磷光胶和磷透视,是重要的细胞膜积木。然而,由于来自大分子膜磷脂(MP)的信号重叠的信号,磷酸酯的定量即使在健康的个体中也是高度争议的。在该研究中,从3和7个特斯拉的健康志愿者获得高信噪比(SNR)脑31p MRS光谱。我们的结果表明,来自MP的最小光谱干扰,在7特斯拉测量的[磷酸氨基(PCR)] /磷酸胆碱(PC)+甘油磷胆碱(GPC)]比例,其价值预期的生物化学约束。相反,使用标准光谱拟合程序获得的3个TesLA [PC + GPC]比率明显小于7特斯拉比和预期值。该分析表明,MP的常用光谱模型可能无法在3个特斯拉捕获其复杂的光谱特征,并且当光谱重叠显着时,需要在低磁场强度下可靠地量化磷酸酯信号。

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