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To automatically identify optimal beam angles for proton therapy configured with the double-scattering delivery technique, a beam angle optimization method based on a convolutional neural network (BAODS-Net) is proposed. Fifty liver plans were used for training in BAODS-Net. To generate a sequence of input data, 25 rays on the eye view of the beam were determined per angle. Each ray collects nine features, including the normalized Hounsfield unit and the position information of eight structures per 2° of gantry angle. The outputs are a set of beam angle ranking scores ( ) ranging from 0° to 359°, with a step size of 1°. Based on these input and output designs, BAODS-Net consists of eight convolution layers and four fully connected layers. To evaluate the plan qualities of deep-learning, equi-spaced, and clinical plans, we compared the performances of three types of loss functions and performed -fold cross-validation ( = 5). For statistical analysis, the volumes V and V as well as the mean, minimum, and maximum doses were calculated for organs-at-risk by using a paired-samples -test. As a result, smooth-L1 loss showed the best optimization performance. At the end of the training procedure, the mean squared errors between the reference and predicted were 0.031, 0.011, and 0.004 for L1, L2, and smooth-L1 loss, respectively. In terms of the plan quality, statistically, Plan has no significant difference from Plan ( >.05). In our test, a deep-learning based beam angle optimization method for proton double-scattering treatments was developed and verified. Using Eclipse API and BAODS-Net, a plan with clinically acceptable quality was created within 5 min.
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http://dx.doi.org/10.3389/fonc.2021.707464 | DOI Listing |
Med Phys
September 2025
Division of Medical Radiation Physics and Department of Radiation Oncology, Inselspital, Bern University Hospital and University of Bern, Bern, Switzerland.
Background: Radiotherapy workflows conventionally deliver one treatment plan multiple times throughout the treatment course. Non-coplanar techniques with beam angle optimization or dosimetrically optimized pathfinding (DOP) exploit additional degrees of freedom to improve spatial conformality of the dose distribution compared to widely used techniques like volumetric-modulated arc therapy (VMAT). The temporal dimension of dose delivery can be exploited using multiple plans (sub-plans) within one treatment course.
View Article and Find Full Text PDFAJNR Am J Neuroradiol
September 2025
From the Department of Interventional Radiology (Shuailong Shi, Shuhai Long, Ji Ma, Peijie Lu, Jie Yang, Ye Wang, Tengfei Li), The First Affiliated Hospital of Zhengzhou University, Zhengzhou, China; The School of Life Science and Technology (Zhike Zhang), Xi'an Jiaotong University, Xi'an, China; an
Background And Purpose: Although high-resolution cone-beam computed tomography (HR-CBCT) is used for immediate evaluation of stent apposition, studies using this technique to evaluate flow diverter (FD) endothelialization during follow-up are limited. The study aims to investigate the potential of HR-CBCT in assessing FD endothelialization and identify factors influencing poor endothelialization.
Materials And Methods: The clinical and imaging data of patients with unruptured intracranial aneurysms (UIAs) treated by FDs from March 2019 to October 2023 were retrospectively analyzed.
As humanity ventures beyond Earth, developing radiation-stable coatings from non-fossil sources becomes essential. Beta radiation can significantly harm materials, making it essential to seek resilient, biobased alternatives to work in corrosive environments and high temperatures. Herein, a novel lignin-based coating demonstrating exceptional beta-radiation resistance and anticorrosion properties is presented.
View Article and Find Full Text PDFAdv Mater
September 2025
Dept. of Physics, Pennsylvania State University, University Park, PA, 16802, USA.
Altermagnets are a newly identified family of collinear antiferromagnets with a momentum-dependent spin-split band structure of non-relativistic origin, derived from spin-group symmetry-protected crystal structures. Among candidate altermagnets, CrSb is attractive for potential applications because of a large spin-splitting near the Fermi level and a high Néel transition temperature of around 700 K. Molecular beam epitaxy is used to synthesize CrSb (0001) thin films with thicknesses ranging from 10 to 100 nm.
View Article and Find Full Text PDFBr J Oral Maxillofac Surg
August 2025
University Hospital of Southern Denmark, Esbjerg, 3D Lab Denmark, Finsensgade 35, 6700 Esbjerg, Denmark; University Hospital of Southern Denmark, Esbjerg, Department of Oral and Maxillofacial Surgery, Finsensgade 35, 6700 Esbjerg, Denmark; University of Southern Denmark, Faculty of Health Sciences,
Limited long-term 3-dimensional (3D) studies exist evaluating risk factors for condylar resorption following orthognathic surgery. Our aim was to evaluate patient demographics, clinical and radiographic characteristics, and orthognathic surgical effects on long-term postoperative condylar volume and height, and horizontal skeletal stability, using a 3D approach. Analysis of clinical data and cone-beam computed tomography before, and approximately two weeks and five years after surgery was carried out on 50 subjects (17 male, 33 female), mean (range) age 25.
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