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DEVELOPMENT AND INVESTIGATION OF INTENSITY-MODULATED RADIATION THERAPY TREATMENT PLANNING FOR FOUR-DIMENSIONAL ANATOMY

机译:四维解剖学的强度​​调制辐射治疗计划的研究与开发

摘要

Lung cancer is the leading cause of cancer-related deaths worldwide. Radiotherapy is one of the main treatment modalities of lung cancer. However, the achievable accuracy of radiotherapy treatment is limited for lung-based tumors due to respiratory motion. Four-dimensional radiotherapy explicitly accounts for anatomic motion by characterizing the motion, creating a treatment plan that accounts for this motion, and delivering this plan to the moving anatomy. This thesis focuses on the current problems and solutions throughout the course of four-dimensional radiotherapy. For characterization of respiratory-induced motion, patient tumor motion data were analyzed. It is shown that tumor motion can be significant during radiotherapy treatment, and its extent, direction, and linearity vary considerably between patients, between treatment fractions, and between respiratory cycles. After this, approaches to four-dimensional intensity-modulated radiation therapy treatment planning were developed and investigated. Among the techniques to manage respiratory motion, tumor tracking using a dynamic multileaf collimator delivery technique was chosen as a promising method. A formalism to solve a general four-dimensional intensity-modulated radiation therapy treatment-planning problem was developed. Specific solutions to this problem accounting for tumor motion initially in one dimension and extending this to three dimensions were developed and investigated using four-dimensional computed tomography planning scans of lung cancer patients. For four-dimensional radiotherapy treatment delivery, accuracy of two-dimensional projection imaging methods was investigated. Geometric uncertainty due to the limitation of two-dimensional imaging in monitoring three-dimensional tumor motion during treatment delivery was quantified. This geometric uncertainty can be used to estimate proper margins when a single two-dimensional projection imager is used for four-dimensional treatment delivery. Lastly, tumor-tracking delivery using a moving average algorithm was investigated as an alternative delivery technique that reduces mechanical motion constraints of a multileaf collimator. Moving average tracking provides an approximate solution that can be immediately implemented for delivery of four-dimensional intensity-modulated radiation therapy treatment. The clinical implementation of four-dimensional guidance, intensity-modulated radiation therapy treatment planning, and dynamic multileaf collimator tracking delivery may have a positive impact on the treatment of lung cancer.
机译:肺癌是全球癌症相关死亡的主要原因。放射疗法是肺癌的主要治疗方式之一。然而,由于呼吸运动,对于基于肺的肿瘤,放射治疗的可达到的准确性受到限制。四维放疗通过特征化运动,创建解释该运动的治疗计划并将该计划传送到运动的解剖结构中,明确地说明解剖运动。本论文着重研究在四维放射治疗过程中当前存在的问题和解决方案。为了表征呼吸诱发的运动,分析了患者的肿瘤运动数据。结果表明,在放射治疗期间,肿瘤的运动可能很明显,而且其程度,方向和线性在患者之间,治疗部位之间以及呼吸周期之间也存在很大差异。在此之后,开发并研究了四维强度调制放射疗法治疗计划的方法。在管理呼吸运动的技术中,使用动态多叶准直器输送技术进行肿瘤跟踪被选为有前途的方法。建立了解决一般的四维强度调制放射疗法治疗计划问题的形式主义。针对这一问题的特定解决方案最初是在一个维度上考虑到肿瘤运动,然后将其扩展到三个维度,并使用四维计算机断层扫描计划对肺癌患者进行了计划扫描。对于四维放疗治疗,研究了二维投影成像方法的准确性。量化由于二维图像的局限性,在治疗过程中监测三维肿瘤运动中的二维成像的不确定性。当将单个二维投影成像器用于四维治疗时,此几何不确定性可用于估计适当的余量。最后,研究了使用移动平均算法的肿瘤追踪递送,作为减少多叶准直仪机械运动约束的另一种递送技术。移动平均跟踪提供了一种近似解决方案,可以立即实施该解决方案,以进行三维强度调制的放射疗法治疗。三维指导,强度调制放射疗法治疗计划以及动态多叶准直仪跟踪交付的临床实施可能对肺癌的治疗产生积极影响。

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    suh yelin;

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