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Towards adaptive radiotherapy for head and neck patients: validation of an in-house deformable registration algorithm

机译:对头部和颈部患者的自适应放射治疗:验证内部可变形登记算法

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The purpose of this work is to validate an in-house deformable image registration (DIR) algorithm for adaptive radiotherapy for head and neck patients. We aim to use the registrations to estimate the "dose of the day" and assess the need to replan. NiftyReg is an open-source implementation of the B-splines deformable registration algorithm, developed in our institution. We registered a planning CT to a CBCT acquired midway through treatment for 5 HN patients that required replanning. We investigated 16 different parameter settings that previously showed promising results. To assess the registrations, structures delineated in the CT were warped and compared with contours manually drawn by the same clinical expert on the CBCT. This structure set contained vertebral bodies and soft tissue. Dice similarity coefficient (DSC), overlap index (OI), centroid position and distance between structures' surfaces were calculated for every registration, and a set of parameters that produces good results for all datasets was found. We achieve a median value of 0.845 in DSC, 0.889 in OI, error smaller than 2 mm in centroid position and over 90% of the warped surface pixels are distanced less than 2 mm of the manually drawn ones. By using appropriate DIR parameters, we are able to register the planning geometry (pCT) to the daily geometry (CBCT).
机译:这项工作的目的是验证用于头部和颈部患者的适应放射治疗的内部可变形图像配准(DIR)算法。我们的目标是使用注册来估计“一天的剂量”并评估补充的需要。 Niftyreg是在我们机构开发的B样式可变形登记算法的开源实现。我们通过治疗5 HN所需的患者,在中途获得CBCT的CT为CBCT的计划。我们调查了16种不同的参数设置,以前显示了有希望的结果。为了评估注册,CT中描绘的结构被翘曲,并与由CBCT上的相同临床专家手动绘制的轮廓进行比较。该结构含有椎体和软组织。为每个注册计算骰子相似度系数(DSC),重叠索引(OI),质心位置和结构之间的曲面之间的距离,并找到了一组为所有数据集产生良好结果的参数。我们在DSC中达到0.845的中值,0.889在OI中,误差小于2mm的质心位置,超过90%的翘曲表面像素距离小于2毫米的手动绘制。通过使用适当的DIR参数,我们能够将计划几何(PCT)注册到日常几何(CBCT)。

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