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首页> 外文期刊>Physics in medicine and biology. >A proto-type design of a real-tissue phantom for the validation of deformation algorithms and 4D dose calculations.
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A proto-type design of a real-tissue phantom for the validation of deformation algorithms and 4D dose calculations.

机译:用于验证变形算法和4D剂量计算的真实组织模型的原型设计。

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摘要

The purpose of this study is to design a real-tissue phantom for use in the validation of deformation algorithms. A phantom motion controller that runs sinusoidal and non-regular patient-based breathing pattern, via a piston, was applied to porcine liver tissue. It was regulated to simulate movement ranges similar to recorded implanted liver markers from patients. 4D CT was applied to analyze deformation. The suitability of various markers in the liver and the position reproducibility of markers and of reference points were studied. The similarity of marker motion pattern in the liver phantom and in real patients was evaluated. The viability of the phantom over time and its use with electro-magnetic tracking devices were also assessed. High contrast markers, such as carbon markers, implanted in the porcine liver produced less image artifacts on CT and were well visualized compared to metallic ones. The repositionability of markers was within a measurement accuracy of +/-2 mm. Similar anatomical patient motions were reproducible up to elongations of 3 cm for a time period of at least 90 min. The phantom is compatible with electro-magnetic tracking devices and 4D CT. The phantom motion is reproducible and simulates realistic patient motion and deformation. The ability to carry out voxel-based tracking allows for the evaluation of deformation algorithms in a controlled environment with recorded patient traces. The phantom is compatible with all therapy devices clinically encountered in our department.
机译:这项研究的目的是设计一种用于验证变形算法的真实组织模型。将通过活塞运行正弦曲线和基于患者的非常规呼吸模式的幻像运动控制器应用于猪肝组织。它被调节为模拟运动范围,类似于记录的患者植入的肝脏标记物。应用4D CT分析变形。研究了各种标记物在肝脏中的适用性以及标记物和参考点的位置可再现性。评估了人体模型和真实患者中标记运动模式的相似性。还评估了幻影随时间的生存能力及其在电磁跟踪设备中的使用。植入猪肝中的高对比度标记物(例如碳标记物)与金属标记物相比,在CT上产生的图像伪影更少,并且可视化程度很高。标记的可重新定位性在+/- 2 mm的测量精度范围内。在至少90分钟的时间内,可将类似的解剖患者运动复制到3 cm的伸长。该体模与电磁跟踪设备和4D CT兼容。幻像运动是可重现的,并模拟现实的患者运动和变形。执行基于体素的跟踪的能力允许在具有记录的患者迹线的受控环境中评估变形算法。幻影与我们部门临床上遇到的所有治疗设备兼容。

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