Zhong Hualiang
Department of Radiation Oncology, Medical College of Wisconsin, Milwaukee, Wisconsin, USA.
Med Phys. 2025 Feb;52(2):1305-1310. doi: 10.1002/mp.17514. Epub 2024 Nov 15.
Radiation therapy often requires the accumulation of doses from multiple treatment fractions or courses for plan evaluation and treatment response assessment. However, due to underlying mass changes, the accumulated dose may not accurately reflect the total deposited energy, leading to potential inaccuracies in characterizing the treatment input.
This study introduces an energy-conserving dose summation method to calculate the total dose in scenarios where patients experience changes in body mass during treatment.
The proposed method transfers dose and mass data from dosimetry images, where the delivered doses were calculated, to a reference image using an energy and mass-conserving dose reconstruction technique. The reconstructed dose assumes the same resolution and dimension as the reference image. The transferred masses are averaged at each image voxel in the reference image to generate an average mass. The transferred doses are then adjusted by multiplying by the ratio of their transferred mass to the average mass, and subsequently summed to calculate a mass-weighted (MW) total dose at each voxel. This method is demonstrated with a case of lung cancer retreatment.
The MW total dose was shown to be equivalent to the total deposited energy divided by the average mass. In the lung cancer retreatment case, the energy derived from the MW total dose was consistent with the sum of energy transferred from two treatments across all evaluated organs.
The MW dose summation method can produce a total dose that accurately reflects the total energy deposited in each organ. The consistency may provide a robust foundation for verifying dose accumulations in adaptive radiotherapy.
放射治疗通常需要累积多个治疗分次或疗程的剂量,以进行计划评估和治疗反应评估。然而,由于潜在的体重变化,累积剂量可能无法准确反映总沉积能量,从而导致在表征治疗输入时可能出现不准确的情况。
本研究引入一种能量守恒剂量求和方法,以计算患者在治疗期间体重发生变化的情况下的总剂量。
所提出的方法使用能量和质量守恒剂量重建技术,将剂量和质量数据从已计算出交付剂量的剂量测定图像转移到参考图像。重建剂量假定与参考图像具有相同的分辨率和尺寸。在参考图像的每个体素处对转移的质量进行平均,以生成平均质量。然后通过将转移剂量乘以其转移质量与平均质量的比值来调整转移剂量,随后求和以计算每个体素处的质量加权(MW)总剂量。通过一例肺癌再治疗病例展示了该方法。
MW总剂量显示等同于总沉积能量除以平均质量。在肺癌再治疗病例中,MW总剂量得出的能量与所有评估器官两次治疗转移的能量总和一致。
MW剂量求和方法可以产生准确反映每个器官中总沉积能量的总剂量。这种一致性可为验证自适应放疗中的剂量累积提供坚实基础。