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Model-based noninvasive estimation of arterial input function from dynamic H/sub 2//sup 15/O PET images

机译:基于模型的动态H / sub 2 // sup 15 / O PET图像对动脉输入功能的无创估计

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For the application of a kinetic model to PET data, it is necessary to obtain the arterial input function. Since arterial blood sampling is invasive and labor intensive, a method to evaluate the input function without arterial blood sampling is important. In case of the [/sup 15/O] water injection study, because of the noise in the time activity curve obtained from the PET reconstructed image round the carotid artery region, a model based evaluation method might be promised. In this study, a model function is composed or combination of blood time activity curve function and tissue time activity curve function which is generated from blood activity curve function. The present method was applied to 15 of dynamic PET scans or /sup 15/O water (10 normal subjects, 10 : Rest, and 5 : Diamox) for normal volunteers. The time activity curve obtained was fitted with the above model function. The shapes or input function obtained was in agreement with that by arterial blood sampling. The accuracy of height of the peak was 14 % and the accuracy of area under the curve was 10 %. This study supposed that present method could be used for direct extraction of the carotid artery input function from the dynamic PET image, and could be used in a quantitative CBF study using /sup 15/O water PET.
机译:为了将动力学模型应用于PET数据,必须获得动脉输入函数。由于动脉血采样是侵入性的和劳动密集型的,因此在没有动脉血采样的情况下评估输入功能的方法很重要。在[/ sup 15 / O]注水研究中,由于从PET重建图像围绕颈动脉区域获得的时间活动曲线中存在噪声,因此可能会提出基于模型的评估方法。在这项研究中,模型函数由血液活动曲线函数和血液活动曲线函数生成的组织时间活动曲线函数或组织时间活动曲线函数组成或组合而成。本方法应用于正常志愿者的15次动态PET扫描或15次/ O水(10名正常受试者,10名:休息和5名:Diamox)。获得的时间活动曲线与上述模型函数拟合。获得的形状或输入功能与通过动脉血采样获得的形状或输入功能一致。峰高的精度为14%,曲线下面积的精度为10%。这项研究假设本方法可用于从动态PET图像直接提取颈动脉输入功能,并可用于使用/ sup 15 / O水PET的定量CBF研究。

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