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首页> 外文期刊>Australasian physical & engineering sciences in medicine >Improving the quality of reconstructed X-ray CT images of polymer gel dosimeters: zero-scan coupled with adaptive mean filtering
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Improving the quality of reconstructed X-ray CT images of polymer gel dosimeters: zero-scan coupled with adaptive mean filtering

机译:改善聚合物凝胶剂量计的重建X射线CT图像的质量:零扫描与自适应均值滤波

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This study evaluated the feasibility of combining the 'zero-scan' (ZS) X-ray computed tomography (CT) based polymer gel dosimeter (PGD) readout with adaptive mean (AM) filtering for improving the signal to noise ratio (SNR), and to compare these results with available average scan (AS) X-ray CT readout techniques. NIPAM PGD were manufactured, irradiated with 6 MV photons, CT imaged and processed in Matlab. AM filter for two iterations, with 3 x 3 and 5 x 5 pixels (kernel size), was used in two scenarios (a) the CT images were subjected to AM filtering (preprocessing) and these were further employed to generate AS and ZS gel images, and (b) the AS and ZS images were first reconstructed from the CT images and then AM filtering was carried out (post-processing). SNR was computed in an ROI of 30 x 30 for different pre and post processing cases. Results showed that the ZS technique combined with AM filtering resulted in improved SNR. Using the previously-recommended 25 images for reconstruction the ZS pre-processed protocol can give an increase of 44% and 80% in SNR for 3 x 3 and 5 x 5 kernel sizes respectively. However, post processing using both techniques and filter sizes introduced blur and a reduction in the spatial resolution. Based on this work, it is possible to recommend that the ZS method may be combined with pre-processed AM filtering using appropriate kernel size, to produce a large increase in the SNR of the reconstructed PGD images.
机译:这项研究评估了将基于“零扫描”(ZS)X射线计算机断层扫描(CT)的聚合物凝胶剂量计(PGD)读数与自适应均值(AM)过滤相结合以改善信噪比(SNR)的可行性,并将这些结果与可用的平均扫描(AS)X射线CT读数技术进行比较。制造NIPAM PGD,用6个MV光子照射,在Matlab中对CT成像并进行处理。在两种情况下使用具有3 x 3和5 x 5像素(内核尺寸)的两次迭代AM滤镜(a)对CT图像进行AM滤镜(预处理),并将其进一步用于生成AS和ZS凝胶(b)首先从CT图像重建AS和ZS图像,然后进行AM滤波(后处理)。针对不同的前后处理情况,以30 x 30的ROI计算SNR。结果表明,ZS技术与AM滤波相结合可提高SNR。使用先前推荐的25张图像进行重构,ZS预处理协议可以分别将3 x 3和5 x 5内核大小​​的SNR提高44%和80%。但是,同时使用技术和滤镜大小的后处理会导致模糊和空间分辨率降低。基于这项工作,可能会建议将ZS方法与使用适当内核尺寸的预处理AM过滤结合使用,以使重建的PGD图像的SNR大大提高。

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