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Towards Implementing an MR-based PET Attenuation Correction Method for Neurological Studies on the MR-PET Brain Prototype

机译:致力于实现基于MR的PET衰减校正方法用于MR-PET脑原型的神经学研究

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摘要

A number of factors have to be considered for implementing an accurate attenuation correction (AC) in a combined MR-PET scanner. In this work, some of these challenges were investigated and an AC method based entirely on the MR data obtained with a single dedicated sequence was developed and used for neurological studies performed with the MR-PET human brain scanner prototype.MethodsThe focus was on the bone/air segmentation problem, the bone linear attenuation coefficient selection and the RF coil positioning. The impact of these factors on the PET data quantification was studied in simulations and experimental measurements performed on the combined MR-PET scanner. A novel dual-echo ultra-short echo time (DUTE) MR sequence was proposed for head imaging. Simultaneous MR-PET data were acquired and the PET images reconstructed using the proposed MR-DUTE-based AC method were compared with the PET images reconstructed using a CT-based AC.
机译:为了在组合的MR-PET扫描仪中实现精确的衰减校正(AC),必须考虑许多因素。在这项工作中,研究了其中一些挑战,并开发了完全基于通过单个专用序列获得的MR数据的AC方法,并将其用于MR-PET人脑扫描仪原型进行的神经系统研究。 /空气分割问题,骨骼线性衰减系数选择和RF线圈定位。在组合MR-PET扫描仪上进行的模拟和实验测量中研究了这些因素对PET数据定量的影响。提出了一种新颖的双回波超短回波时间(DUTE)MR序列用于头部成像。采集了同时的MR-PET数据,并将使用建议的基于MR-DUTE的AC方法重建的PET图像与使用基于CT的AC重建的PET图像进行了比较。

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