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MRPET quantification tools: Registration, segmentation, classification, and MR-based attenuation correction

机译:MRPET量化工具:配准,分割,分类和基于MR的衰减校正

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Purpose: Combined MRPET is a relatively new, hybrid imaging modality. A human MRPET prototype system consisting of a Siemens 3T Trio MR and brain PET insert was installed and tested at our institution. Its present design does not offer measured attenuation correction (AC) using traditional transmission imaging. This study is the development of quantification tools including MR-based AC for quantification in combined MRPET for brain imaging. Methods: The developed quantification tools include image registration, segmentation, classification, and MR-based AC. These components were integrated into a single scheme for processing MRPET data. The segmentation method is multiscale and based on the Radon transform of brain MR images. It was developed to segment the skull on T1-weighted MR images. A modified fuzzy C-means classification scheme was developed to classify brain tissue into gray matter, white matter, and cerebrospinal fluid. Classified tissue is assigned an attenuation coefficient so that AC factors can be generated. PET emission data are then reconstructed using a three-dimensional ordered sets expectation maximization method with the MR-based AC map. Ten subjects had separate MR and PET scans. The PET with 11CPIB was acquired using a high-resolution research tomography (HRRT) PET. MR-based AC was compared with transmission (TX)-based AC on the HRRT. Seventeen volumes of interest were drawn manually on each subject image to compare the PET activities between the MR-based and TX-based AC methods. Results: For skull segmentation, the overlap ratio between our segmented results and the ground truth is 85.2 ± 2.6. Attenuation correction results from the ten subjects show that the difference between the MR and TX-based methods was 6.5. Conclusions: MR-based AC compared favorably with conventional transmission-based AC. Quantitative tools including registration, segmentation, classification, and MR-based AC have been developed for use in combined MRPET.
机译:目的:组合MRPET是一种相对较新的混合成像方式。在我们的机构中​​安装并测试了由西门子3T Trio MR和大脑PET插入物组成的人类MRPET原型系统。它的当前设计不提供使用传统透射成像的测量衰减校正(AC)。这项研究是定量工具的发展,包括基于MR的交流电,用于组合MRPET进行脑成像的定量。方法:已开发的量化工具包括图像配准,分割,分类和基于MR的AC。这些组件被集成到用于处理MRPET数据的单一方案中。分割方法是多尺度的并且基于脑部MR图像的Radon变换。它被开发来在T1加权MR图像上分割头骨。提出了一种改进的模糊C均值分类方案,可以将脑组织分为灰质,白质和脑脊髓液。为分类的组织分配一个衰减系数,以便可以生成AC因子。然后使用带有基于MR的AC图的三维有序集期望最大化方法重建PET排放数据。十名受试者分别进行了MR和PET扫描。使用高分辨率研究断层扫描(HRRT)PET获得了具有11CPIB的PET。在HRRT上将基于MR的AC与基于传输(TX)的AC进行了比较。在每个对象图像上手动绘制了十七卷感兴趣的图像,以比较基于MR和基于TX的AC方法之间的PET活性。结果:对于颅骨分割,我们的分割结果和地面真实情况之间的重叠率为85.2±2.6。来自十个受试者的衰减校正结果表明,基于MR和TX的方法之间的差异为6.5。结论:与传统的基于传输的交流相比,基于MR的交流具有优势。已开发出定量工具,包括配准,细分,分类和基于MR的AC,可用于组合式MRPET。

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