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Magnetic resonance imaging based correction and reconstruction of positron emission tomography images

机译:基于磁共振成像的正电子排放断层扫描图像的校正与重构

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Due to the inherently limited resolutin of Positron Emission Tomography (PET) scanners,quantitative measurements taken from PET images suffer from the partial volume averaging of activity across regions of interest.A correction for this effect in PET activity distributions is therefore essential to distinguish differences due to changes in tracer concentration from those due to changes in the volumes of the active brain tissue.Various consequent image post-processing techniques have been developed to address this problem (see,for example,[1-6]).These operate using associated high resolution anatomical images such as Manetic Resonance Imaging (MRI),but as well as being highly susceptible to errors in the requisite registration and segmentation procedures,the methods are reliant on unrealistic simiplifying assumptions regarding activity distributions in the brain.This work instead couples the correction of PET data to the reconstruction process itself,presenting a two-step scheme using associated MRI data to achieve this.The first step estimates the prior activity distributions from a segmented and intensity transformed MRI image.This is then used in the second step to constrain the Bayesian PET reconstruction with varying degrees of stringency.The prior,or initial correction process,is applied in the form of an energy term,adapted in accordance to an entropy measure taken on the MRI segmentation; i.e.,where there is anatomical variation,we assume there also to be activity variation.
机译:由于正电子发射断层扫描(PET)扫描仪的固有有限限制,从PET图像取出的定量测量患有跨感兴趣区域的活动的部分体积平均。因此,在PET活动分布中对这种效果的校正是必要的,以区分到期差异在从这些示踪剂浓度因的活性脑tissue.Various因之图像后处理技术的卷的变化而变化已经开发出解决该问题(参见,例如,[1-6]),这些使用来操作相关联高分辨率解剖图像,例如装饰谐振成像(MRI),但以及在必要的登记和分割程序中对错误感到高度敏感,这些方法依赖于关于脑中活动分布的不切实际的模拟假设。这是互联网纠正PET数据到重建过程本身,使用A呈现两步方案SsociateD MRI数据实现这一目标。第一步估计来自分段和强度转换的MRI图像的先前活动分布。然后在第二步中使用,以限制贝叶斯宠物重建,不同程度的严格程度。之前或初步校正过程,以能量术语的形式应用,根据MRI分割所采取的熵措施进行调整;即,在有解剖学变化的地方,我们认为也有活动变化。

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