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An Evaluation of Missing Data Compensation Methods for a PET Camera by Comparing to No-Gap Data

机译:通过比较无间隙数据来评估宠物摄像机的缺失数据补偿方法

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We evaluated three methods for filling gaps in PET projection data that may results from gaps between detectors or from defective detectors. These methods include linear interpolation, constraint Fourier space, and forward projection of the images reconstructed from incomplete data iteratively. We compared reconstructed images from the gap-filled data to the images reconstructed from data without gaps acquired by rotating camera gantry during data acquisition. We collected data for a 20-cm flood phantom and the Hoffman brain phantom using the HOTPET camera that has a spatial resolution of about 3 mm. HOTPET Camera has the capability to be rotated during data acquisition and in standard operation it is rotated to fill the gaps in sinograms. Images reconstructed from data without gantry rotation and without missing data compensation were dominated by artifacts. Filling the gaps with even the simple and fast linear interpolation resulted in images with significantly less artifacts; however, it was less effective than the other two methods. Images from gap-filled data by the other two methods were artifact free but image quality was slightly degraded. Filling the gaps with forward projection of the iterative reconstructed images produced the best results; however, it was the slowest method.
机译:我们评估了三种用于填充宠物投影数据中的间隙的方法,该数据可以从检测器之间的间隙或缺陷的探测器之间产生。这些方法包括线性插值,约束傅里叶空间和从不完全数据重建的图像的向前投影迭代地。我们将从填充的数据与从数据获取期间从数据获取期间旋转相机龙门架进行的数据重建的图像与从数据重建的图像进行比较重建的图像。我们使用具有约3毫米的空间分辨率的热偶相机收集20厘米的洪水幻影和霍夫曼脑幻影的数据。热偶摄像机在数据采集期间具有旋转的能力,并在标准操作中旋转以填充中央图中的间隙。从没有龙门旋转的数据重建的图像且没有丢失的数据补偿是由工件主导的。甚至简单快速的线性插值填充差距导致图像显着减少的图像;但是,它比其他两种方法效果较小。由其他两种方法的间隙填充数据的图像是无伪影,但图像质量略微降低。填补迭代重建图像的前向投影的空隙产生了最佳结果;但是,这是最慢的方法。

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