Purpose This study provides a proof of concept for real-time 4D dose reconstruction for lung stereotactic body radiation therapy (SBRT) with multileaf collimator (MLC) tracking and assesses the impact of tumor tracking on the size of target margins.Methods The authors have implemented real-time 4D dose reconstruction by connecting their tracking and delivery software to an Agility MLC at an Elekta Synergy linac and to their in-house treatment planning software (TPS). Actual MLC apertures and (simulated) target positions are reported to the TPS every 40 ms. The dose is calculated in real-time from 4DCT data directly after each reported aperture by utilization of precalculated dose-influence data based on a Monte Carlo algorithm. The dose is ...
PURPOSE: Respiratory motion-management techniques (MMT) aim to ensure tumor dose coverage while spar...
PURPOSE: Respiratory motion-management techniques (MMT) aim to ensure tumor dose coverage while spar...
Purpose: To use four-dimensional (4D) dose accumulation based on deformable image registration (DIR)...
Purpose This study provides a proof of concept for real‐time 4D dose reconstruction for lung stereot...
By adapting to the actual patient anatomy during treatment, tracked multi-leaf collimator (MLC) trea...
BACKGROUND AND PURPOSE: The purpose of this work is to present the clinical experience from the firs...
PURPOSE: Assess the dosimetric impact of multi-leaf collimator (MLC) tracking and mid-ventilation (m...
Background and purpose: The purpose of this work is to present the clinical experience from the firs...
Background and purpose: The purpose of this work is to present the clinical experience from the firs...
By adapting to the actual patient anatomy during treatment, tracked multi-leaf collimator (MLC) trea...
Purpose: In some patients the tumors in lung, pancreas, liver, breast, and other organs move signifi...
BACKGROUND AND PURPOSE: Real time adaptive radiotherapy that enables smaller irradiated volumes may ...
AbstractBackground and purposeThe latency of a multileaf collimator (MLC) tracking system used to ov...
PURPOSE: To investigate the differences between internal target volumes (ITVs) contoured on the simu...
Volumetric arc therapy (VMAT) for lung stereotactic body radiotherapy (SBRT) is challenging due to b...
PURPOSE: Respiratory motion-management techniques (MMT) aim to ensure tumor dose coverage while spar...
PURPOSE: Respiratory motion-management techniques (MMT) aim to ensure tumor dose coverage while spar...
Purpose: To use four-dimensional (4D) dose accumulation based on deformable image registration (DIR)...
Purpose This study provides a proof of concept for real‐time 4D dose reconstruction for lung stereot...
By adapting to the actual patient anatomy during treatment, tracked multi-leaf collimator (MLC) trea...
BACKGROUND AND PURPOSE: The purpose of this work is to present the clinical experience from the firs...
PURPOSE: Assess the dosimetric impact of multi-leaf collimator (MLC) tracking and mid-ventilation (m...
Background and purpose: The purpose of this work is to present the clinical experience from the firs...
Background and purpose: The purpose of this work is to present the clinical experience from the firs...
By adapting to the actual patient anatomy during treatment, tracked multi-leaf collimator (MLC) trea...
Purpose: In some patients the tumors in lung, pancreas, liver, breast, and other organs move signifi...
BACKGROUND AND PURPOSE: Real time adaptive radiotherapy that enables smaller irradiated volumes may ...
AbstractBackground and purposeThe latency of a multileaf collimator (MLC) tracking system used to ov...
PURPOSE: To investigate the differences between internal target volumes (ITVs) contoured on the simu...
Volumetric arc therapy (VMAT) for lung stereotactic body radiotherapy (SBRT) is challenging due to b...
PURPOSE: Respiratory motion-management techniques (MMT) aim to ensure tumor dose coverage while spar...
PURPOSE: Respiratory motion-management techniques (MMT) aim to ensure tumor dose coverage while spar...
Purpose: To use four-dimensional (4D) dose accumulation based on deformable image registration (DIR)...