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Simulating lung tumor motion for dynamic tumor-tracking irradiation

机译:模拟肺肿瘤运动进行动态肿瘤跟踪辐照

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This study proposes methods for the support of radiotherapy planning for dynamic tumor-tracking irradiation for lung tumors. It aims to simulate the deformation of the lung caused by respiration and to visualize the result as DRRs (Digitally Reconstructed Radiographs) in real time. Our lungdeformation model treats the lung as an elastic object and analyzes the deformation based on linear FEM (the Finite Element Method). The simulation models the lung using CT volume data and generates a model with boundary conditions with freely adjustable regions, displacements, and phases. The doctor planning the radiotherapy can reproduce the movement of the lung tumor by freely adjusting the regions, displacements, and phases of the boundary conditions while comparing the position of the lung tumor in an X-ray photograph. For highspeed display we propose a method for rapid-generation DRRs by slice-based volume rendering. The result of several functional evaluations and trials of simulation established that the proposed method can describe the movement of the lung tumor with adequate precision. The developed system is expected to be useful for radiotherapy planning for real-time tumor-pursuing irradiation.
机译:本研究提出了支持肺肿瘤动态肿瘤跟踪辐射放射疗法的方法。它旨在模拟由呼吸引起的肺的变形,并实时地将结果视为DRR(数字重建射线照片)。我们的Lungdeformation模型将肺部视为弹性物体,并基于线性有限元(有限元法)分析变形。模拟使用CT卷数据模拟肺部,并产生具有自由可调节区域,位移和阶段的边界条件的模型。在比较X射线照片中的肺肿瘤的位置,可以通过自由调节边界条件的区域,位移和阶段来再现肺肿瘤的运动来再现肺肿瘤的运动。对于高速显示,我们提出了一种基于切片的卷渲染的快速发电机的方法。仿真若干功能评估和试验的结果确定了该方法可以用足够的精度描述肺肿瘤的运动。该发达的系统预计可用于针对实时肿瘤追踪的放射疗法规划。

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