Spatiotemporally Optimal Fractionation in Radiotherapy
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Publication:4599313
DOI10.1287/ijoc.2016.0740zbMath1377.90120OpenAlexW2616949137MaRDI QIDQ4599313
Minsun Kim, Archis Ghate, Fatemeh Saberian
Publication date: 29 December 2017
Published in: INFORMS Journal on Computing (Search for Journal in Brave)
Full work available at URL: https://semanticscholar.org/paper/c7310107007b9db15d79f02cf1aa7b2bb7bb0dfb
Convex programming (90C25) Applications of mathematical programming (90C90) Medical applications (general) (92C50)
Related Items (8)
Operator splitting for adaptive radiation therapy with nonlinear health dynamics ⋮ Scalable Optimization Methods for Incorporating Spatiotemporal Fractionation into Intensity-Modulated Radiotherapy Planning ⋮ Multistage stochastic fractionated intensity modulated radiation therapy planning ⋮ Robust Direct Aperture Optimization for Radiation Therapy Treatment Planning ⋮ Robust spatiotemporally integrated fractionation in radiotherapy ⋮ Optimization of Radiation Therapy Fractionation Schedules in the Presence of Tumor Repopulation ⋮ Unnamed Item ⋮ Adjustable robust treatment-length optimization in radiation therapy
Cites Work
- Convexity and concavity properties of the optimal value function in parametric nonlinear programming
- Intensity modulated radiation therapy treatment plan optimization. With comments and rejoinder
- A two-variable linear program solves the standard linear-quadratic formulation of the fractionation problem in cancer radiotherapy
- A stochastic control formalism for dynamic biologically conformal radiation therapy
- Optimization of Radiation Therapy Fractionation Schedules in the Presence of Tumor Repopulation
- Quantifying the Trade-off Between IMRT Treatment Plan Quality and Delivery Efficiency Using Direct Aperture Optimization
- A New Linear Programming Approach to Radiation Therapy Treatment Planning Problems
- Generalized convexity and concavity of the optimal value function in nonlinear programming
- Optimal fractionation in radiotherapy with multiple normal tissues
- Optimizing the Delivery of Radiation Therapy to Cancer Patients
- Mathematical optimization in intensity modulated radiation therapy
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