Background: During RT cycles, the tumor response pattern could affect tumor coverage and may lead to organs at risk of overdose. As such, early prediction of significant volumetric changes could therefore reduce potential radiation-related adverse effects. Nevertheless, effective machine learning approaches based on the radiomic features of the clinically used CBCT images to determine the tumor volume variations due to RT not having been implemented so far. Methods: CBCT images from 40 HN cancer patients were collected weekly during RT treatment. From the obtained images, the Clinical Target Volume (CTV) and Parotid Glands (PG) regions of interest were utilized to calculate 104 delta-radiomics features. These features were fed on a feature ...
PURPOSE: Highlighting the risk of biases in radiomics-based models will help improve their quality a...
Purpose: Highlighting the risk of biases in radiomics-based models will help improve their quality a...
Adaptive radiation therapy (ART) is an advanced field of radiation oncology. Image-guided radiation ...
International audienceAn increasing number of parameters can be considered when making decisions in ...
International audienceAn increasing number of parameters can be considered when making decisions in ...
International audienceAn increasing number of parameters can be considered when making decisions in ...
Context: Cancer Radiomics is an emerging field in medical imaging and refers to the process of conve...
Purpose To predict patients who would benefit from adaptive radiotherapy (ART) and re-planning inter...
Purpose To predict patients who would benefit from adaptive radiotherapy (ART) and re-planning inter...
Purpose: Patients with head-and-neck cancer (HNC) may experience xerostomia after radiation therapy ...
Purpose: To create and investigate a novel, clinical decision-support system using machine learning ...
The investment in proton radiation therapy raises the question of how cancer patients should be pri...
Head and neck cancer has great regional anatomical complexity, as it can develop in different struct...
The investment in proton radiation therapy raises the question of how cancer patients should be prio...
Radiotherapy is one of the main ways head and neck cancers are treated; radiation is used to kill c...
PURPOSE: Highlighting the risk of biases in radiomics-based models will help improve their quality a...
Purpose: Highlighting the risk of biases in radiomics-based models will help improve their quality a...
Adaptive radiation therapy (ART) is an advanced field of radiation oncology. Image-guided radiation ...
International audienceAn increasing number of parameters can be considered when making decisions in ...
International audienceAn increasing number of parameters can be considered when making decisions in ...
International audienceAn increasing number of parameters can be considered when making decisions in ...
Context: Cancer Radiomics is an emerging field in medical imaging and refers to the process of conve...
Purpose To predict patients who would benefit from adaptive radiotherapy (ART) and re-planning inter...
Purpose To predict patients who would benefit from adaptive radiotherapy (ART) and re-planning inter...
Purpose: Patients with head-and-neck cancer (HNC) may experience xerostomia after radiation therapy ...
Purpose: To create and investigate a novel, clinical decision-support system using machine learning ...
The investment in proton radiation therapy raises the question of how cancer patients should be pri...
Head and neck cancer has great regional anatomical complexity, as it can develop in different struct...
The investment in proton radiation therapy raises the question of how cancer patients should be prio...
Radiotherapy is one of the main ways head and neck cancers are treated; radiation is used to kill c...
PURPOSE: Highlighting the risk of biases in radiomics-based models will help improve their quality a...
Purpose: Highlighting the risk of biases in radiomics-based models will help improve their quality a...
Adaptive radiation therapy (ART) is an advanced field of radiation oncology. Image-guided radiation ...