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Purpose: Auto-segmentation algorithms offer a potential solution to eliminate the labor-intensive, time-consuming, and observer-dependent manual delineation of organs-at-risk (OARs) in radiotherapy treatment planning. This study aimed to develop a deep learning-based automated OAR delineation method to tackle the current challenges remaining in achieving reliable expert performance with the state-of-the-art auto-delineation algorithms.
Methods: The accuracy of OAR delineation is expected to be improved by utilizing the complementary contrasts provided by computed tomography (CT) (bony-structure contrast) and magnetic resonance imaging (MRI) (soft-tissue contrast). Given CT images, synthetic MR images were firstly generated by a pre-trained cycle-consistent generative adversarial network. The features of CT and synthetic MRI were then extracted and combined for the final delineation of organs using mask scoring regional convolutional neural network. Both in-house and public datasets containing CT scans from head-and-neck (HN) cancer patients were adopted to quantitatively evaluate the performance of the proposed method against current state-of-the-art algorithms in metrics including Dice similarity coefficient (DSC), 95th percentile Hausdorff distance (HD95), mean surface distance (MSD), and residual mean square distance (RMS).
Results: Across all of 18 OARs in our in-house dataset, the proposed method achieved an average DSC, HD95, MSD, and RMS of 0.77 (0.58-0.90), 2.90 mm (1.32-7.63 mm), 0.89 mm (0.42-1.85 mm), and 1.44 mm (0.71-3.15 mm), respectively, outperforming the current state-of-the-art algorithms by 6%, 16%, 25%, and 36%, respectively. On public datasets, for all nine OARs, an average DSC of 0.86 (0.73-0.97) were achieved, 6% better than the competing methods.
Conclusion: We demonstrated the feasibility of a synthetic MRI-aided deep learning framework for automated delineation of OARs in HN radiotherapy treatment planning. The proposed method could be adopted into routine HN cancer radiotherapy treatment planning to rapidly contour OARs with high accuracy.
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http://dx.doi.org/10.1002/mp.15146 | DOI Listing |
J Neurooncol
September 2025
Department of Radiation Oncology, Massachusetts General Hospital, Boston, USA.
Purpose: Cranial irradiation is associated with health-related quality of life (HRQoL) deficits in childhood cancer survivors. We investigated the relationship between radiation dose to brain substructures and HRQoL in children with brain tumors treated with proton beam therapy (PBT).
Methods: Data were obtained from children in the Pediatric Proton/Photon Consortium Registry who received PBT for primary brain tumors between 2015 and 2021.
Pediatr Surg Int
September 2025
Pediatric Surgery Unit, Department of Women's and Children's Health, University of Padua, Via Nicolò Giustiniani, 35100, Padua, Italy.
Introduction: Brachytherapy has been used for the multimodal treatment of pediatric bladder-prostate rhabdomyosarcoma in the last two decades. The aim of this systematic review is to gather the current evidence about this innovative technique with a special focus on long-term outcomes.
Methods: According to PRISMA criteria, PubMed, Scopus, and Web of Science were searched for papers published between 2000 and 2022.
Strahlenther Onkol
September 2025
Department of Radiation Oncology, University Hospital of Münster, Münster, Germany.
The growing use of reduced-dose radiotherapy in patients with primary cutaneous lymphoma is a promising development. Nevertheless, the absence of controlled clinical trials to ascertain standardized doses for each specific type constitutes a significant impediment to the advancement of this field. This expert opinion strongly advocates for advancements in radiation oncology practice that address the unique complexities of primary cutaneous lymphoma.
View Article and Find Full Text PDFJ Cancer Res Clin Oncol
September 2025
Cancer Treatment and Nuclear Cardiology Department, Al Azhar University, Cairo, Egypt.
Background: High-dose-rate (HDR) brachytherapy is essential in the treatment of locally advanced cervical cancer. While Iridium-192 (Ir-192) is commonly used, its short half-life imposes logistical and financial constraints, particularly in low- and middle-income countries (LMICs). Cobalt-60 (Co-60), with a longer half-life and lower operational costs, is a viable alternative.
View Article and Find Full Text PDFFuture Oncol
September 2025
Medical Oncology Unit, Comprehensive Cancer Centre, AUSL-IRCCS di Reggio Emilia, Reggio Emilia, Italy.
Background: Esophageal cancer is a rare neoplasm, with more than 0.6 million new cases and 0.54 million deaths worldwide in 2020.
View Article and Find Full Text PDF