Diagnostic image‐based treatment planning for online adaptive ultra‐hypofractionated prostate cancer radiotherapy with MR‐Linac
作者:Yuan Xu, Ningning Lu, Qiao Li, Kuo Men, Xinming Zhao, Jianrong Dai · 发表于:Journal of Applied Clinical Medical Physics · 年份:2025 · DOI:10.1002/acm2.70075 · 被引用次数:2 · 研究领域:Advanced Radiotherapy Techniques、Radiation Therapy and Dosimetry、Prostate Cancer Diagnosis and Treatment
Abstract Purpose A new workflow was investigated for Elekta Unity MR‐Linac by removing the computed tomography (CT)‐simulation step and using diagnostic CT (DCT) for reference plan generation. Materials and methods Ten patients with ultra‐hypofractionated prostate cancer treated with magnetic resonance imaging (MRI)‐guided adaptive radiotherapy were retrospectively enrolled. Targets and organs at risk (OARs) were recontoured on DCT, and Hounsfield unit conversions to relative electron density were calibrated for DCT. Reference plans were reoptimized and recalculated using DCT for Unity. Subsequent adaptive plans were designed through an adapt‐to‐shape workflow to edit targets and OARs via daily MRI to generate a new treatment plan. Bulk electron density information for Unity adaptive plan was compared between planning CT (PCT) and DCT for volumes of interest. Dosimetric parameters were evaluated between PCT‐ and DCT‐based reference and adaptive plans for target coverage and OAR dose constraints. Results Bulk relative electron density differences between PCT and DCT were within ±1% for targets and OARs, excepting the rectum. PCT and DCT‐based reference plans did not significantly differ in mean target coverages or for OARs in dosimetric difference except for V 36 Gy of the rectum. PCT‐ and DCT‐based adaptive plans did not significantly differ for most dosimetric parameters of targets and OARs except for V 29 Gy and V 36 Gy of the rectum, V 18.1 Gy of the bladder, and D 50% of ...