Purpose: To develop a model to assess the quality of an IMRT treatment plan using data of prior patients with pancreatic adenocarcinoma. Methods: The dose to an organ at risk (OAR) depends in large part on its orientation and distance to the planning target volume (PTV). A database of 33 previously treated patients with pancreatic cancer was queried to find patients with less favorable PTV-OAR configuration than a new case. The minimal achieved dose among the selected patients should also be achievable for the OAR of the new case. This way the achievable doses to the OARs of 25 randomly selected pancreas cancer patients were predicted. The patients were replanned to verify if the predicted dose could be achieved. The new plans were compared...
Background and purpose: MR-guided radiation therapy (MRgRT) with daily plan adaptation is a novel bu...
Abstract Background To simplify the adaptive treatment planning workflow while achieving the optimal...
Objectives: To determine the potential for dose escalation to a biological equivalent dose BED10≅100...
Purpose: To develop a model to assess the quality of an IMRT treatment plan using data of prior pati...
Purpose: To develop a model to assess the quality of an IMRT treatment plan using data of prior pati...
Purpose: To evaluate customizing a knowledge-based planning (KBP) model using dosimetric analysis fo...
Purpose: To assess the feasibility of automated stereotactic volumetric modulated arc therapy (SBRT-...
Purpose: Stereotactic magnetic resonance image–guided adaptive radiation therapy (SMART) is an emerg...
PURPOSE: Local recurrence is a common and morbid event in patients with unresectable pancreatic aden...
PURPOSE: Local recurrence is a common and morbid event in patients with unresectable pancreatic aden...
Purpose: There are limited treatment options for locally advanced, unresectable pancreatic cancer (L...
Purpose /objective: To quantify benefits of robust optimization on multiple 4DCT acquisitions combin...
Background: Intensity-modulated radiotherapy (IMRT) allows for improved sparing of organs at risk (O...
Purpose /objective: To quantify benefits of robust optimization on multiple 4DCT acquisitions combin...
Purpose /objective: To quantify benefits of robust optimization on multiple 4DCT acquisitions combin...
Background and purpose: MR-guided radiation therapy (MRgRT) with daily plan adaptation is a novel bu...
Abstract Background To simplify the adaptive treatment planning workflow while achieving the optimal...
Objectives: To determine the potential for dose escalation to a biological equivalent dose BED10≅100...
Purpose: To develop a model to assess the quality of an IMRT treatment plan using data of prior pati...
Purpose: To develop a model to assess the quality of an IMRT treatment plan using data of prior pati...
Purpose: To evaluate customizing a knowledge-based planning (KBP) model using dosimetric analysis fo...
Purpose: To assess the feasibility of automated stereotactic volumetric modulated arc therapy (SBRT-...
Purpose: Stereotactic magnetic resonance image–guided adaptive radiation therapy (SMART) is an emerg...
PURPOSE: Local recurrence is a common and morbid event in patients with unresectable pancreatic aden...
PURPOSE: Local recurrence is a common and morbid event in patients with unresectable pancreatic aden...
Purpose: There are limited treatment options for locally advanced, unresectable pancreatic cancer (L...
Purpose /objective: To quantify benefits of robust optimization on multiple 4DCT acquisitions combin...
Background: Intensity-modulated radiotherapy (IMRT) allows for improved sparing of organs at risk (O...
Purpose /objective: To quantify benefits of robust optimization on multiple 4DCT acquisitions combin...
Purpose /objective: To quantify benefits of robust optimization on multiple 4DCT acquisitions combin...
Background and purpose: MR-guided radiation therapy (MRgRT) with daily plan adaptation is a novel bu...
Abstract Background To simplify the adaptive treatment planning workflow while achieving the optimal...
Objectives: To determine the potential for dose escalation to a biological equivalent dose BED10≅100...