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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Comparison of first pass bolus AIFs extracted from sequential ~(18)F-FDG PET and DSC-MRI of mice
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Comparison of first pass bolus AIFs extracted from sequential ~(18)F-FDG PET and DSC-MRI of mice

机译:从连续〜(18)F-FDG PET和DSC-MRI小鼠中提取的首过推注AIF的比较

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摘要

Accurate kinetic modelling of in vivo physiological function using positron emission tomography (PET) requires determination of the tracer time-activity curve in plasma, known as the arterial input function (AIF). The A1F is usually determined by invasive blood sampling methods, which are prohibitive in murine studies due to low total blood volumes. Extracting AIFs from PET images is also challenging due to large partial volume effects (PVE). We hypothesise that in combined PET with magnetic resonance imaging (PET/MR), a co-injected bolus of MR contrast agent and PET ligand can be tracked using fast MR acquisitions. This protocol would allow extraction of a MR AIF from MR contrast agent concentration-time curves, at higher spatial and temporal resolution than an image-derived PET AIF. A conversion factor could then be applied to the MR AIF for use in PET kinetic analysis. This work has compared AIFs obtained from sequential DSC-MRI and PET with separate injections of gadolinium contrast agent and ~(18)F-FDG respectively to ascertain the technique's validity. An automated voxel selection algorithm was employed to improve MR AIF reproducibility. We found that MR and PET AIFs displayed similar character in the first pass, confirmed by gamma variate fits (p < 0.02). MR AIFs displayed reduced PVE compared to PET AIFs, indicating their potential use in PET/MR studies.
机译:使用正电子发射断层扫描(PET)对体内生理功能进行精确的动力学建模需要确定血浆中示踪剂的时间-活动曲线,称为动脉输入功能(AIF)。 A1F通常是通过有创血液采样方法确定的,由于总血液量少,在鼠类研究中是禁止的。由于较大的部分体积效应(PVE),从PET图像提取AIF也是一项挑战。我们假设在结合PET与磁共振成像(PET / MR)的情况下,可以使用快速MR采集来跟踪MR造影剂和PET配体的共同注射大剂量。该协议将允许从MR造影剂浓度-时间曲线中提取MR AIF,其空间和时间分辨率要高于图像PET AIF。然后可以将转换因子应用于MR AIF,以用于PET动力学分析。这项工作将连续DSC-MRI和PET与分别注射of造影剂和〜(18)F-FDG所得的AIF进行了比较,以确定该技术的有效性。采用自动体素选择算法来改善MR AIF的可重复性。我们发现,MR和PET AIF在第一遍显示出相似的特征,这已通过伽玛变量拟合得到证实(p <0.02)。与PET AIF相比,MR AIF显示出降低的PVE,表明它们在PET / MR研究中的潜在用途。

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    Wolfson Brain Imaging Centre, Department of Clinical Neurosciences, School of Clinical Medicine, University of Cambridge, Cambridge Biomedkal Campus,Cambridge, CB2 0QQ, UK;

    Wolfson Brain Imaging Centre, Department of Clinical Neurosciences, School of Clinical Medicine, University of Cambridge, Cambridge Biomedkal Campus,Cambridge, CB2 0QQ, UK,Behavioural and Clinical Neuroscience Institute, Department of Experimental Psychology, University of Cambridge, Cambridge, CB2 3EB, UK;

    Wolfson Brain Imaging Centre, Department of Clinical Neurosciences, School of Clinical Medicine, University of Cambridge, Cambridge Biomedkal Campus,Cambridge, CB2 0QQ, UK;

    Wolfson Brain Imaging Centre, Department of Clinical Neurosciences, School of Clinical Medicine, University of Cambridge, Cambridge Biomedkal Campus,Cambridge, CB2 0QQ, UK;

    Wolfson Brain Imaging Centre, Department of Clinical Neurosciences, School of Clinical Medicine, University of Cambridge, Cambridge Biomedkal Campus,Cambridge, CB2 0QQ, UK;

    Wolfson Brain Imaging Centre, Department of Clinical Neurosciences, School of Clinical Medicine, University of Cambridge, Cambridge Biomedkal Campus,Cambridge, CB2 0QQ, UK;

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  • 正文语种 eng
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  • 关键词

    PET/MR; Arterial input function; PET; MRI; Mice; Contrast agent;

    机译:PET / MR;动脉输入功能;宠物;核磁共振;老鼠;造影剂;

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