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Scatter Corrections for Cone Beam Optical CT

机译:锥形光束光学CT的散点校正

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Cone beam optical computed tomography (OptCT) employing the VISTA scanner (Modus Medical, London, ON) has been shown to have significant promise for fast, three dimensional imaging of polymer gel dosimeters. One distinct challenge with this approach arises from the combination of the cone beam geometry, a diffuse light source, and the scattering polymer gel media, which all contribute scatter signal that perturbs the accuracy of the scanner. Beam stop array (BSA), beam pass array (BPA) and anti-scatter polarizer correction methodologies have been employed to remove scatter signal from OptCT data. These approaches are investigated through the use of well-characterized phantom scattering solutions and irradiated polymer gel dosimeters. BSA corrected scatter solutions show good agreement in attenuation coefficient with the optically absorbing dye solutions, with considerable reduction of scatter-induced cupping artifact at high scattering concentrations. The application of BSA scatter corrections to a polymer gel dosimeter lead to an overall improvement in the number of pixel satisfying the (3percent, 3mm) gamma value criteria from 7.8percent to 0.15percent.
机译:锥形光束光学计算机断层扫描(OPTCT)采用Vista扫描仪(Modus Medical,London,ON)已经显示出具有显着的高分子聚合物凝胶剂量计的三维成像的重要许可。这种方法的一个不同的挑战是由锥形光束几何形状,漫射光源和散射聚合物凝胶介质的组合而产生的,它们都有贡献散射信号,其扫描仪的精度。已经采用光束停止阵列(BSA),光束通阵列(BPA)和防散偏振器校正方法从OPTCT数据去除散点信号。通过使用良好表征的体模散射溶液和辐照的聚合物凝胶剂量计来研究这些方法。 BSA校正的散点溶液在衰减系数与光学吸收染料溶液中显示出良好的一致性,具有显着降低在高散射浓度下的散射诱导的拔管伪影。 BSA散射校正对聚合物凝胶剂量计的应用导致满足(3percent,3mm)伽马值标准的像素数量的总体改进。

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