首页> 美国卫生研究院文献>Journal of Cerebral Blood Flow Metabolism >Estimation of an image derived input function with MR-defined carotid arteries in FDG-PET human studies using a novel partial volume correction method
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Estimation of an image derived input function with MR-defined carotid arteries in FDG-PET human studies using a novel partial volume correction method

机译:使用新的部分体积校正方法估算FDG-PET人体研究中具有MR定义的颈动脉的图像衍生输入函数

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摘要

Kinetic analysis of 18F-fluorodeoxyglucose positron emission tomography data requires an accurate knowledge the arterial input function. The gold standard method to measure the arterial input function requires collection of arterial blood samples and is an invasive method. Measuring an image derived input function is a non-invasive alternative but is challenging due to partial volume effects caused by the limited spatial resolution of the positron emission tomography scanners. In this work, a practical image derived input function extraction method is presented, which only requires segmentation of the carotid arteries from MR images. The simulation study results showed that at least 92% of the true intensity could be recovered after the partial volume correction. Results from 19 subjects showed that the mean cerebral metabolic rate of glucose calculated using arterial samples and partial volume corrected image derived input function were 26.9 and 25.4 mg/min/100 g, respectively, for the grey matter and 7.2 and 6.7 mg/min/100 g for the white matter. No significant difference in the estimated cerebral metabolic rate of glucose values was observed between arterial samples and corrected image derived input function (p > 0.12 for grey matter and white matter). Hence, the presented image derived input function extraction method can be a practical alternative to noninvasively analyze dynamic 18F-fluorodeoxyglucose data without the need for blood sampling.
机译: 18 F-氟脱氧葡萄糖正电子发射断层扫描数据的动力学分析需要对动脉输入功能的准确了解。衡量动脉输入功能的黄金标准方法需要采集动脉血样,并且是一种侵入性方法。测量图像导出的输入功能是一种非侵入性替代方法,但是由于正电子发射断层扫描仪的空间分辨率有限而导致部分体积效应,因此具有挑战性。在这项工作中,提出了一种实用的图像派生输入函数提取方法,该方法仅需要从MR图像中分割颈动脉。仿真研究结果表明,部分体积校正后至少可以恢复到真实强度的92%。 19名受试者的结果显示,对于灰质和灰质分别为7.2和6.7μmg/ min /,使用动脉样本和部分体积校正图像得出的输入函数计算的葡萄糖的平均脑新陈代谢率分别为26.9和25.4μmg/ min /100μg。白质100微克。在动脉样本和校正的图像衍生输入函数之间,未观察到脑葡萄糖代谢率估计值的显着差异(对于灰质和白质,p> 0.12)。因此,提出的图像导出输入函数提取方法可以作为无创分析动态 18 F-氟脱氧葡萄糖数据的一种实用替代方法,而无需进行血液采样。

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