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20232026
most citedArtificial Intelligence-Facilitated Online Adaptive Proton Therapy Using Pencil Beam Scanning Proton Therapy

2 citations · 3 across the 6 of their papers we have counts for

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physics.med-ph2025

Diffusion Transformer-based Universal Dose Denoising for Pencil Beam Scanning Proton Therapy

Yuzhen Ding, Jason Holmes, Hongying Feng +13

Purpose: Intensity-modulated proton therapy (IMPT) offers precise tumor coverage while sparing organs at risk (OARs) in head and neck (H&N) cancer. However, its sensitivity to anat…

physics.med-ph2024

Robust Optimization for Spot Scanning Proton Therapy based on Dose-Linear Energy Transfer (LET) Volume Constraints

Jingyuan Chen, Yunze Yang, Hongying Feng +8

Purpose: Historically, spot scanning proton therapy (SSPT) treatment planning utilizes dose volume constraints and linear-energy-transfer (LET) volume constraints separately to bal…

physics.med-ph2023

Noisy probing dose facilitated dose prediction for pencil beam scanning proton therapy: physics enhances generalizability

Lian Zhang, Jason M. Holmes, Zhengliang Liu +11

Purpose: Prior AI-based dose prediction studies in photon and proton therapy often neglect underlying physics, limiting their generalizability to handle outlier clinical cases, esp…

physics.med-ph20232 cited

Artificial Intelligence-Facilitated Online Adaptive Proton Therapy Using Pencil Beam Scanning Proton Therapy

Hongying Feng, Jie Shan, Carlos E. Vargas +10

We propose an oAPT workflow that incorporates all these functionalities and validate its clinical implementation feasibility with prostate patients. AI-based auto-segmentation tool…

physics.med-ph2023

Beam mask and sliding window-facilitated deep learning-based accurate and efficient dose prediction for pencil beam scanning proton therapy

Lian Zhang, Jason M. Holmes, Zhengliang Liu +12

Purpose: To develop a DL-based PBSPT dose prediction workflow with high accuracy and balanced complexity to support on-line adaptive proton therapy clinical decision and subsequent…