PURPOSE: Radiation dose to the heart and cardiac substructures has been linked to cardiotoxicities. Because cardiac substructures are poorly visualized on treatment-planning computed tomography (CT) scans, we used the superior soft-tissue contrast of magnetic resonance (MR) imaging to optimize a hybrid MR/CT atlas for substructure dose assessment using CT. METHODS AND MATERIALS: Thirty-one patients with left-sided breast cancer underwent a T2-weighted MR imaging scan and noncontrast simulation CT scans. A radiation oncologist delineated 13 substructures (chambers, great vessels, coronary arteries, etc) using MR/CT information via cardiac-confined rigid registration. Ground-truth contours for 20 patients were inputted into an intensity-based...
Background and purpose: The aim of the present study was to evaluate if it is feasible for experienc...
Incidental radiation exposure to the heart during lung cancer radiotherapy is associated with radiat...
Background and purpose: Developing NTCP-models for cardiac complications after breast cancer (BC) ra...
PURPOSE: Radiation dose to the heart and cardiac substructures has been linked to cardiotoxicities. ...
Purpose: While radiation dose to cardiac substructures has been linked to increased cardiac toxiciti...
Purpose/Objective(s): Growing evidence suggests that radiation therapy (RT) doses to the heart and c...
Background and Purpose: The heart is a complex anatomical organ and contouring the cardiac substruct...
BACKGROUND AND PURPOSE: The heart is a complex anatomical organ and contouring the cardiac substruct...
Purpose: Radiation dose to cardiac substructures is related to radiationinduced heart disease. Howev...
Background and purpose We developed an automatic method to segment cardiac substructures given a ra...
Purpose/Objective(s): Mounting evidence suggests that cardiac substructures are highly radiosensitiv...
Background and purpose: Quantifying radiation dose to cardiac substructures is important for researc...
Purpose: We evaluated the feasibility of using an automatic segmentation tool to delineate cardiac s...
Radiotherapy is a safe and effective treatment for many patients with cancer. However, incidental ra...
Emerging evidence suggests cardiac substructures are highly radiosensitive during radiation therapy ...
Background and purpose: The aim of the present study was to evaluate if it is feasible for experienc...
Incidental radiation exposure to the heart during lung cancer radiotherapy is associated with radiat...
Background and purpose: Developing NTCP-models for cardiac complications after breast cancer (BC) ra...
PURPOSE: Radiation dose to the heart and cardiac substructures has been linked to cardiotoxicities. ...
Purpose: While radiation dose to cardiac substructures has been linked to increased cardiac toxiciti...
Purpose/Objective(s): Growing evidence suggests that radiation therapy (RT) doses to the heart and c...
Background and Purpose: The heart is a complex anatomical organ and contouring the cardiac substruct...
BACKGROUND AND PURPOSE: The heart is a complex anatomical organ and contouring the cardiac substruct...
Purpose: Radiation dose to cardiac substructures is related to radiationinduced heart disease. Howev...
Background and purpose We developed an automatic method to segment cardiac substructures given a ra...
Purpose/Objective(s): Mounting evidence suggests that cardiac substructures are highly radiosensitiv...
Background and purpose: Quantifying radiation dose to cardiac substructures is important for researc...
Purpose: We evaluated the feasibility of using an automatic segmentation tool to delineate cardiac s...
Radiotherapy is a safe and effective treatment for many patients with cancer. However, incidental ra...
Emerging evidence suggests cardiac substructures are highly radiosensitive during radiation therapy ...
Background and purpose: The aim of the present study was to evaluate if it is feasible for experienc...
Incidental radiation exposure to the heart during lung cancer radiotherapy is associated with radiat...
Background and purpose: Developing NTCP-models for cardiac complications after breast cancer (BC) ra...