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Partial Volume Correction using Cortical Surfaces

机译:使用皮质表面进行部分体积校正

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Partial volume effect (PVE) in positron emission tomography (PET) leads to inaccurate estimation of regional metabolic activities among neighbouring tissues with different tracer concentration. This may be one of the main limiting factors in the utilization of PET in clinical practice. Partial volume correction (PVC) methods have been widely studied to address this issue. MRI based PVC methods are well-established. Their performance depend on the quality of the co-registration of the MR and PET dataset, on the correctness of the estimated point-spread function (PSF) of the PET scanner and largely on the performance of the segmentation method that divide the brain into brain tissue compartments. In the present study a method for PVC is suggested, that utilizes cortical surfaces, to obtain detailed anatomical information. The objectives are to improve the performance of PVC, facilitate a study of the relationship between metabolic activity in the cerebral cortex and cortical thicknesses, and to obtain an improved visualization of PET data. The gray matter metabolic activity after performing PVC was recovered by 99.7 - 99.8 % , in relation to the true activity when testing on simple simulated data with different PSFs and by 97.9 - 100 % when testing on simulated brain PET data at different cortical thicknesses. When studying the relationship between metabolic activities and anatomical structures it was shown on simulated brain PET data, that it is important to correct for PVE in order to get the true relationship.
机译:正电子发射断层扫描(PET)中的部分体积效应(PVE)导致具有不同示踪剂浓度的相邻组织之间的区域代谢活动估计不准确。这可能是临床实践中利用PET的主要限制因素之一。部分体积校正(PVC)方法已得到广泛研究,以解决此问题。基于MRI的PVC方法是公认的。它们的性能取决于MR和PET数据集共配准的质量,PET扫描仪的估计点扩展函数(PSF)的正确性以及很大程度上取决于将大脑分为大脑的分割方法的性能组织隔室。在本研究中,提出了一种利用皮质表面的PVC方法,以获取详细的解剖信息。目的是改善PVC的性能,促进对大脑皮层中代谢活性与皮质厚度之间关系的研究,并获得PET数据的改进可视化。进行PVC后的灰质代谢活性相对于使用不同PSF的简单模拟数据进行测试时的真实活性可恢复99.7-99.8%,而对于使用不同皮质厚度的模拟脑部PET数据进行测试时可恢复97.9-100%。在研究代谢活动与解剖结构之间的关系时,已在模拟的大脑PET数据上显示出,校正PVE以获取真正的关系很重要。

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