A DUAL QUATERNION BASED METHOD FOR ESTIMATING MARGINS FOR PLANNING TARGET VOLUMES IN RADIOTHERAPY.

Q J Ge, Zihan Yu, Mark Langer
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Abstract

This objective of this paper is to develop a dual quaternion based method for estimating target volumes in radiation therapy for head and neck cancer. Inaccuracies in radiation targeting are responsible for incidental exposure of healthy adjacent tissues, causing significant morbidity and mortality. This paper focuses on inaccuracies incurred when a tumor is displaced during treatment. To address this problem, the clinical target must be expanded to cover the region through which the tumor might move. The resulting expanded target is known as the Planning Target Volume (PTV). In the current practice, the rotational components of displacements are neglected, producing planning target volumes that either miss the true target motion or are larger than needed to cover the target path. By using the dual quaternion based kinematic formulation, this paper represents and captures both translational and rotational inaccuracies. It then presents a framework for calculating the PTV swept out by the target as it shifts within its range of translations and rotations.

基于对偶四元数的放射治疗靶体积规划裕度估计方法。
本文的目的是开发一种基于对偶四元数的方法来估计头颈癌放射治疗中的靶体积。辐射定位的不准确是造成健康邻近组织意外暴露的原因,造成显著的发病率和死亡率。本文的重点是在治疗过程中肿瘤移位引起的不准确性。为了解决这个问题,临床靶点必须扩大到覆盖肿瘤可能移动的区域。由此产生的扩展目标称为规划目标卷(PTV)。在目前的实践中,位移的旋转分量被忽略,产生的规划目标体积要么错过了真正的目标运动,要么大于覆盖目标路径所需的体积。通过使用基于对偶四元数的运动学公式,本文表示并捕获了平移和旋转的不精度。然后提出了一个框架,用于计算目标在平移和旋转范围内移动时扫出的PTV。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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