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Fast high-resolution 3D dosimetry utilizing a novel optical-CT scanner incorporating tertiary telecentric collimation

机译:利用结合了三次远心准直的新型光学CT扫描仪进行快速高分辨率的3D剂量测定

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摘要

This study introduces a charge coupled device (CCD) area detector based optical-computed tomography (optical-CT) scanner for comprehensive verification of radiation dose distributions recorded in nonscattering radiochromic dosimeters. Defining characteristics include: (i) a very fast scanning time of ~5 min to acquire a complete three-dimensional (3D) dataset, (ii) improved image formation through the use of custom telecentric optics, which ensures accurate projection images and minimizes artifacts from scattered and stray-light sources, and (iii) high resolution (potentially 50 μm) isotropic 3D dose readout. The performance of the CCD scanner for 3D dose readout was evaluated by comparison with independent 3D readout from the single laser beam OCTOPUS™-scanner for the same PRESAGE™ dosimeters. The OCTOPUS™ scanner was considered the “gold standard” technique in light of prior studies demonstrating its accuracy. Additional comparisons were made against calculated dose distributions from the ECLIPSE treatment-planning system. Dose readout for the following treatments were investigated: (i) a single rectangular beam irradiation to investigate small field and very steep dose gradient dosimetry away from edge effects, (ii) a 2-field open beam parallel-opposed irradiation to investigate dosimetry along steep dose gradients, and (iii) a 7-field intensity modulated radiation therapy (IMRT) irradiation to investigate dosimetry for complex treatment delivery involving modulation of fluence and for dosimetry along moderate dose gradients. Dose profiles, dose-difference plots, and gamma maps were employed to evaluate quantitative estimates of agreement between independently measured and calculated dose distributions. Results indicated that dose readout from the CCD scanner was in agreement with independent gold-standard readout from the OCTOPUS™-scanner as well as the calculated ECLIPSE dose distribution for all treatments, except in regions within a few millimeters of the edge of the dosimeter, where edge artifact is predominant. Agreement of line profiles was observed, even along steep dose gradients. Dose difference plots indicated that the CCD scanner dose readout differed from the OCTOPUS™ scanner readout and ECLIPSE calculations by ~10% along steep dose gradients and by ~5% along moderate dose gradients. Gamma maps (3% dose-difference and 3 mm distance-toagreement acceptance criteria) revealed agreement, except for regions within 5 mm of the edge of the dosimeter where the edge artifact occurs. In summary, the data demonstrate feasibility of using the fast, high-resolution CCD scanner for comprehensive 3D dosimetry in all applications, except where dose readout is required close to the edges of the dosimeter. Further work is ongoing to reduce this artifact.
机译:这项研究介绍了一种基于电荷耦合器件(CCD)区域检测器的光学计算机断层扫描(optical-CT)扫描仪,用于全面验证记录在非散射放射色剂量计中的辐射剂量分布。定义的特征包括:(i)约5分钟的非常快的扫描时间,以获取完整的三维(3D)数据集,(ii)通过使用定制的远心光学器件改善了图像形成,这确保了准确的投影图像并最大程度地减少了伪影(iii)高分辨率(可能为50μm)各向同性3D剂量读数。通过与相同PRESAGE™剂量计的单激光束OCTOPUS™-扫描仪的独立3D读数进行比较,评估了CCD扫描仪用于3D剂量读数的性能。根据先前的研究表明,OCTOPUS™扫描仪被证明是“金标准”技术,它的准确性很高。针对ECLIPSE治疗计划系统中计算出的剂量分布进行了其他比较。研究了以下治疗的剂量读数:(i)单矩形束辐照,以研究小场和非常陡峭的剂量梯度剂量学,远离边缘效应;(ii)2场开束平行对置辐射,以研究沿陡峭的剂量学剂量梯度;以及(iii)7场强度调制放射治疗(IMRT)辐射,以研究涉及调节通量的复杂治疗的剂量学以及沿中等剂量梯度的剂量学。剂量分布图,剂量差异图和伽马图用于评估独立测量和计算的剂量分布之间一致性的定量估计。结果表明,CCD扫描仪的剂量读数与OCTOPUS™扫描仪的独立金标准读数以及计算出的所有治疗的ECLIPSE剂量分布一致,除了剂量计边缘几毫米范围内的区域,边缘伪影占主导地位。即使沿陡峭的剂量梯度,也观察到线轮廓一致。剂量差异图表明,CCD扫描仪的剂量读数与OCTOPUS™扫描仪的读数和ECLIPSE计算在陡峭的剂量梯度下相差约10%,在中等剂量梯度下相差约5%。伽玛图(3%的剂量差异和3mm的距离-接受标准)显示出一致,除了剂量计边缘的5mm范围内发生边缘伪影的区域。总而言之,数据证明了在所有应用中使用快速,高分辨率CCD扫描仪进行全面3D剂量测定的可行性,除非需要在剂量计边缘附近读取剂量。为了减少这种伪影,正在进行进一步的工作。

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