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首页> 外文期刊>Physics in medicine and biology. >Fast reconstruction of 3D time-of-flight PET data by axial rebinning and transverse mashing
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Fast reconstruction of 3D time-of-flight PET data by axial rebinning and transverse mashing

机译:通过轴向重组和横向混合快速重建3D飞行时间PET数据

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摘要

Faster scintillators like LaBr3 and LSO have sparked renewed interest in PET scanners with time-of-flight (TOF) information. The TOF information adds another dimension to the data set compared to conventional three-dimensional (3D) PET with the size of the projection data being multiplied by the number of TOF bins. Here we show by simulations and analytical reconstruction that angular sampling for two-dimensional (2D) TOF PET can be reduced significantly compared to what is required for conventional 2D PET. Fully 3D TOF PET data, however, have a wide range of oblique and transverse angles. To make use of the smaller necessary angular sampling we reduce the 3D data to a set of 2D histoprojections. This is done by rebinning the 3D data to 2D data and by mashing these 2D data into a limited number of angles. Both methods are based on the most likely point given by the TOF measurement. It is shown that the axial resolution loss associated with rebinning reduces with improved timing resolution and becomes less than I mm for a TOF resolution below 300 ps. The amount of angular mashing that can be applied without tangential resolution loss increases with improved TOF resolution. Even quite coarse angular mashing (18 angles out of 324 measured angles for 424 ps) does not significantly reduce image quality in terms of the contrast or noise. The advantages of the proposed methods are threefold. Data storage is reduced to a limited number of 2D histoprojections with TOF information. Compared to listmode format we have the advantage of a predetermined storage space and faster reconstruction. The method does not require the normalization of projections prior to rebinning and can be applied directly to measured listmode data.
机译:更快的闪烁器(如LaBr3和LSO)激发了人们对飞行时间(TOF)信息对PET扫描仪的兴趣。与常规的三维(3D)PET相比,TOF信息为数据集增加了另一个维度,投影数据的大小乘以TOF箱的数量。在这里,我们通过仿真和分析重构表明,与常规2D PET相比,二维(2D)TOF PET的角度采样可以大大减少。但是,全3D TOF PET数据具有广泛的倾斜角和横向角。为了利用较小的必要角度采样,我们将3D数据缩减为一组2D组织投影。这是通过将3D数据重新绑定为2D数据并将这些2D数据混成有限数量的角度来完成的。两种方法都基于TOF测量给出的最可能的点。结果表明,与重新合并相关联的轴向分辨率损失随着定时分辨率的提高而减小,并且对于低于300 ps的TOF分辨率,变得小于1 mm。改进的TOF分辨率可增加不造成切向分辨率损失的角度混合效果。即使是相当粗糙的角度混搭(在424 ps的324个测量角度中有18个角度)也不会显着降低对比度或噪声的图像质量。所提出的方法的优点是三方面的。带有TOF信息的数据存储减少到有限数量的2D组织投影。与列表模式格式相比,我们具有预定存储空间和更快重建的优势。该方法不需要在重新绑定之前对投影进行归一化,并且可以直接应用于测量的列表模式数据。

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