arXiv:2604.12778physics.med-phcs.AI2026-04被引 2

公开115例患者多模态影像与精准剂量数据,助力放疗AI加速计算

DoseRAD2026 Challenge dataset: AI accelerated photon and proton dose calculation for radiotherapy

  • 构建配对CT/MRI与束级剂量分布数据集,支持多模态放疗计算
  • 包含4万+光子束、8万+质子束的蒙特卡洛真实剂量,精度高
  • 适合研究放疗AI加速算法者,尤其聚焦实时自适应放疗场景

准确的剂量计算对精确照射肿瘤并保护健康组织至关重要。随着磁共振引导和实时自适应放疗的普及,基于CT和MRI的快速精准剂量计算需求日益增长。DoseRAD2026数据集及挑战赛提供了一组配对的CT与MRI数据,以及光子(6 MV)和质子的束级蒙特卡洛剂量分布,用于开发和评估先进剂量计算方法。数据来自115名患者(75例训练,40例测试),均接受过在磁共振直线加速器上治疗胸腹病变,源自SynthRAD2025数据集。预处理包括可变形图像配准、空气腔修正和重采样。使用开源蒙特卡洛算法生成真实剂量,共产生40,500个光子束和81,000个质子束。数据以光子和质子子集形式组织,包含配对的CT-MRI影像、束级剂量分布和JSON配置文件,格式为压缩的MetaImage (.mha)。数据集采用CC BY-NC 4.0许可,训练数据将于2026年4月开放,测试集保留至2030年3月。可用于基准测试快速剂量计算方法,涵盖光子/质子束级剂量估计、基于MRI的剂量计算及实时自适应放疗。

原文摘要 · Abstract (English)

Purpose: Accurate dose calculation is essential in radiotherapy for precise tumor irradiation while sparing healthy tissue. With the growing adoption of MRI-guided and real-time adaptive radiotherapy, fast and accurate dose calculation on CT and MRI is increasingly needed. The DoseRAD2026 dataset and challenge provide a public benchmark of paired CT and MRI data with beam-level photon and proton Monte Carlo dose distributions for developing and evaluating advanced dose calculation methods. Acquisition and validation methods: The dataset comprises paired CT and MRI from 115 patients (75 training, 40 testing) treated on an MRI-linac for thoracic or abdominal lesions, derived from the SynthRAD2025 dataset. Pre-processing included deformable image registration, air-cavity correction, and resampling. Ground-truth photon (6 MV) and proton dose distributions were computed using open-source Monte Carlo algorithms, yielding 40,500 photon beams and 81,000 proton beamlets. Data format and usage notes: Data are organized into photon and proton subsets with paired CT-MRI images, beam-level dose distributions, and JSON beam configuration files. Files are provided in compressed MetaImage (.mha) format. The dataset is released under CC BY-NC 4.0, with training data available from April 2026 and the test set withheld until March 2030. Potential applications: The dataset supports benchmarking of fast dose calculation methods, including beam-level dose estimation for photon and proton therapy, MRI-based dose calculation in MRI-guided workflows, and real-time adaptive radiotherapy.

放疗计算多模态数据剂量预测AI加速

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