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Assessment of 2D and 3D image characteristics of an optical CT scanner for 3D dosimetry

机译:评估用于3D剂量测定的光学CT扫描仪的2D和3D图像特征

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摘要

Gel dosimetry is a method of measuring a dose distribution in three dimensions and requires an efficient accurate read-out approach. Optical CT has the potential to provide this. It is the aim of the present study to characterise the components and properties of a commercially available cone beam optical CT scanner and investigate procedures which could be used for commissioning or as part of an ongoing scanner quality assurance program. Light spectra, CCD response, warm-up time, spatial resolution, response to light intensity, uniformity and the influence of scatter were all demonstrated to influence the accuracy of the optical CT scanner, with the light source/ filter combination and warm up time demonstrating the most significant impact. Individual phantom attenuation coefficients were characterised and used to determine the stability of the phantoms over a period of time. Profiles measured from 2D projections and 3D reconstructions were measured and compared to absorbing solutions to determine uniformity and scattering properties. Recommendations are made for a set of quality assurance procedures, which include geometry calibration of the scanner, characterising the light source, verifying the CCD is functioning correctly, checking the reconstructed accuracy and verifying the reconstruction spatial fidelity. Commissioning of an optical CT scanner should include an optimisation of the scanner geometry and lens settings, measurement of the spectra and temporal stability of the light source, measurement of CCD reciprocity, quantification of attenuation coefficient accuracy, uniformity and noise and measurement of spatial resolution. This work has shown that appropriate warm up times, light source and filter combinations and phantom material selection and manufacturing processors can significantly influence measured attenuation coefficient accuracy, uniformity and noise.
机译:凝胶剂量测定法是一种在三个维度上测量剂量分布的方法,需要一种有效的准确读出方法。光学CT有潜力提供此功能。本研究的目的是表征可商购的锥形束光学CT扫描仪的组件和性能,并研究可用于调试或作为正在进行的扫描仪质量保证计划一部分的程序。光谱,CCD响应,预热时间,空间分辨率,对光强度的响应,均匀性和散射的影响都被证明会影响光学CT扫描仪的精度,其中光源/滤光片组合以及预热时间证明了这一点。影响最大。对各个体模衰减系数进行表征,并用于确定体模在一段时间内的稳定性。测量了从2D投影和3D重建测量的轮廓,并将其与吸收溶液进行比较以确定均匀性和散射特性。针对一系列质量保证程序提出了建议,其中包括扫描仪的几何结构校准,表征光源,验证CCD是否正常工作,检查重构的精度以及验证重构的空间保真度。光学CT扫描仪的调试应包括对扫描仪的几何形状和透镜设置进行优化,对光源的光谱和时间稳定性进行测量,对CCD互易性进行测量,对衰减系数精度,均匀性和噪声进行量化以及对空间分辨率进行测量。这项工作表明,适当的预热时间,光源和滤光片组合以及幻像材料的选择和制造处理器会显着影响测得的衰减系数的准确性,均匀性和噪声。

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    Begg J;

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