Effects of Breathing on Dose Distribution in Heavy-Ion Radiotherapy Based on Medical Image Processing

Yangping Wang, Jianwu Dang, Xiaogang Du
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Abstract

Heavy ion dose distribution is sensitive to anatomic changes and tissue motion due to high dose concentrated on Bragg peak with high relative biological effectiveness (RBE). During treating target sites especially in lung cancer cases, breathing motion may result unintended variations in the dose distribution. Based on image registration, segmentation and pseudo-color algorithm, the work conducts a study on the calculation and visualization of the heavy dose distribution for 3D superimposed conformal irradiation and dose evaluation. Then the paper investigates the respiratory motion effects on the dosimetric redistribution on target and critical tissues during heavy ion radiotherapy. In our experiments, ten patients have been undergone routine free breathing CT scan, two additional CT scans at the end of inspiration and the end of expiration. The results have showed that clinical target volume (CTV) coverage is compromised markedly due to respiration. The paper suggests a real-time respiratory gating system and adjustable dramatic multi-leaf collimator should be adopted in lung cancer cases for heavy ion radiotherapy with small CTV-to-PTV margin
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基于医学图像处理的呼吸对重离子放疗剂量分布的影响
重离子剂量分布对解剖变化和组织运动非常敏感,高剂量集中在Bragg峰上,具有较高的相对生物效应(RBE)。在治疗靶部位,特别是肺癌病例中,呼吸运动可能导致剂量分布的意外变化。基于图像配准、分割和伪彩色算法,研究了三维叠加适形照射大剂量分布的计算与可视化及剂量评估。然后研究了重离子放疗过程中呼吸运动对靶组织和关键组织剂量重分布的影响。在我们的实验中,10例患者进行了常规的自由呼吸CT扫描,在吸气结束和呼气结束时进行了两次额外的CT扫描。结果表明,临床靶体积(CTV)覆盖明显受损,由于呼吸。建议肺癌患者采用实时呼吸门控系统和可调戏剧性多叶准直仪进行小ctv - ptv切缘重离子放疗
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