A deep learning network can convert fast ray-tracing dose estimates into collapsed-cone-quality dose distributions for prostate IMRT in about one second.
Three-Dimensional Dose Prediction for Lung IMRT Patients with Deep Neural Networks: Robust Learning from Heterogeneous Beam Configurations
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abstract
The use of neural networks to directly predict three-dimensional dose distributions for automatic planning is becoming popular. However, the existing methods only use patient anatomy as input and assume consistent beam configuration for all patients in the training database. The purpose of this work is to develop a more general model that, in addition to patient anatomy, also considers variable beam configurations, to achieve a more comprehensive automatic planning with a potentially easier clinical implementation, without the need of training specific models for different beam settings.
fields
physics.med-ph 1years
2019 1verdicts
CONDITIONAL 1representative citing papers
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A Feasibility Study on Deep Learning-Based Radiotherapy Dose Calculation
A deep learning network can convert fast ray-tracing dose estimates into collapsed-cone-quality dose distributions for prostate IMRT in about one second.