首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >Noninvasive quantification of cerebral metabolic rate for glucose in rats using F-18-FDG PET and standard input function
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Noninvasive quantification of cerebral metabolic rate for glucose in rats using F-18-FDG PET and standard input function

机译:使用F-18-FDG PET和标准输入功能对大鼠葡萄糖的脑代谢率进行无创定量分析

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摘要

Measurement of arterial input function (AIF) for quantitative positron emission tomography (PET) studies is technically challenging. The present study aimed to develop a method based on a standard arterial input function (SIF) to estimate input function without blood sampling. We performed F-18-fluolodeoxyglucose studies accompanied by continuous blood sampling for measurement of AIF in 11 rats. Standard arterial input function was calculated by averaging AIFs from eight anesthetized rats, after normalization with body mass (BM) and injected dose (ID). Then, the individual input function was estimated using two types of SIF: (1) SIF calibrated by the individual's BM and ID (estimated individual input function, EIFNS) and (2) SIF calibrated by a single blood sampling as proposed previously (EIF1S). No significant differences in area under the curve (AUC) or cerebral metabolic rate for glucose (CMRGlc) were found across the AIF-, EIFNS-, and EIF1S-based methods using repeated measures analysis of variance. In the correlation analysis, AUC or CMRGlc derived from EIFNS was highly correlated with those derived from AIF and EIF1S. Preliminary comparison between AIF and EIFNS in three awake rats supported an idea that the method might be applicable to behaving animals. The present study suggests that EIFNS method might serve as a noninvasive substitute for individual AIF measurement.
机译:用于定量正电子发射断层扫描(PET)研究的动脉输入功能(AIF)的测量在技术上具有挑战性。本研究旨在开发一种基于标准动脉输入功能(SIF)的方法,无需血液采样即可估算输入功能。我们进行了F-18-氟脱氧葡萄糖研究,并连续进行了血液采样以测量11只大鼠的AIF。在将体重(BM)和注射剂量(ID)归一化后,通过平均八只麻醉大鼠的AIF来计算标准动脉输入功能。然后,使用两种类型的SIF估算个人输入功能:(1)通过个人的BM和ID校准的SIF(估算的个人输入功能,EIFNS),以及(2)通过先前提出的单次血液采样校准的SIF(EIF1S) 。使用重复测量方差分析,在基于AIF,EIFNS和EIF1S的方法中,曲线下面积(AUC)或葡萄糖的脑代谢率(CMRGlc)均未发现显着差异。在相关分析中,衍生自EIFNS的AUC或CMRGlc与衍生自AIF和EIF1S的AUC或CMRGlc高度相关。对三只清醒大鼠的AIF和EIFNS的初步比较支持了一种想法,认为该方法可能适用于行为动物。本研究表明,EIFNS方法可作为个体AIF测量的无创替代方法。

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