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Short Acquisition Time PET Quantification Using MRI-Based Pharmacokinetic Parameter Synthesis

机译:使用基于MRI的药代动力学参数合成在短时间内采集PET定量

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Positron Emission Tomography (PET) with pharmacokinetic (PK) modelling is a quantitative molecular imaging technique, however the long data acquisition time is prohibitive in clinical practice. An approach has been proposed to incorporate blood flow information from Arterial Spin Labelling (ASL) Magnetic Resonance Imaging (MRI) into PET PK modelling to reduce the acquisition time. This requires the conversion of cerebral blood flow (CBF) maps, measured by ASL, into the relative tracer delivery parameter (R_1) used in the PET PK model. This was performed regionally using linear regression between population R_1 and ASL values. In this paper we propose a novel technique to synthesise Ri maps from ASL data using a database with both R_1 and CBF maps. The local similarity between the candidate ASL image and those in the database is used to weight the propagation of R_1 values to obtain the optimal patient specific R_1 map. Structural MRI data is also included to provide information within common regions of artefact in ASL data. This methodology is compared to the linear regression technique using leave one out analysis on 32 subjects. The proposed method significantly improves regional R_1 estimation (p < 0.001), reducing the error in the pharmacokinetic modelling. Furthermore, it allows this technique to be extended to a voxel level, increasing the clinical utility of the images.
机译:具有药代动力学(PK)建模的正电子发射断层扫描(PET)是一种定量的分子成像技术,但是,较长的数据采集时间在临床实践中是被禁止的。已经提出了一种将来自动脉自旋标记(ASL)磁共振成像(MRI)的血流信息合并到PET PK建模中以减少采集时间的方法。这需要将通过ASL测量的脑血流(CBF)图转换为PET PK模型中使用的相对示踪剂传递参数(R_1)。这是通过使用总体R_1和ASL值之间的线性回归在区域内执行的。在本文中,我们提出了一种新颖的技术,可以使用具有R_1和CBF映射的数据库从ASL数据合成Ri映射。候选ASL图像与数据库中的图像之间的局部相似性用于加权R_1值的传播,以获得最佳的患者特定R_1图。还包括结构性MRI数据,以在ASL数据中的常见伪影区域内提供信息。该方法与线性回归技术进行了比较,后者对32位受试者进行了留一法分析。所提出的方法显着改善了区域R_1估计(p <0.001),减少了药代动力学建模中的误差。此外,它允许将该技术扩展到体素水平,从而提高了图像的临床实用性。

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