Intrafraction organ motion during the dynamic delivery of intensity‐modulated radiation therapy (IMRT) treatment of lung tumors may cause unexpected hot/cold spots within the target volume, due to the interplay effect between tumor motion and multileaf collimator (MLC) leaf motion. In the past, this has been investigated through theoretical analysis, computer simulation, and experimental measurement using an ionization chamber dosimeter. In the work presented here, the interplay effect was studied experimentally in 2D, using Kodak EDR2 films. A five‐field lung IMRT plan was delivered to a solid water phantom with embedded film. The phantom was placed on a motor‐driven platform with a sinusoidal motion to simulate the respiration‐induced tum...
Background/purpose: Intensity-modulated proton therapy (IMPT) dose distributions can be severely deg...
The dose of a real tumor target volume and surrounding organs at risk (OARs) under the effect of res...
The synchronization of dynamic multileaf collimator (DMLC) response with respiratory motion is criti...
Intrafraction motion has long been suspected of causing inaccuracies in the resultant dose delivered...
Background and objectives: To justify the concept of validating conformal versus intensity-modulated...
[[abstract]]During radiation therapy for lung cancer, the respiratory motion of the target increases...
Intrafractional motion and interfractional changes affect the accuracy of the delivered dose in radi...
Introduction: During free-breathing arbitrary phase, a mean motion reconstruction is acquired using ...
PurposeRestricted studies comparing different dose rate parameters are available while ITV-based VMA...
Intra-fraction respiration motion during radiation delivery presents a major challenge to radiation ...
Purpose: The purpose of present study was to experimentally evaluate the dosimetric uncertainties in...
Objective: During precision irradiation of a preclinical lung tumour model, the tumour is subject to...
This study evaluated the effect of respiratory movement on field-in-field (FIF) forward intensity-mo...
Purpose: Intrafractional respiratory motion is a concern for lung tumor radiotherapy but full evalua...
This study aims to investigate the utility of 1-D convolution as a predictive method to quantify the...
Background/purpose: Intensity-modulated proton therapy (IMPT) dose distributions can be severely deg...
The dose of a real tumor target volume and surrounding organs at risk (OARs) under the effect of res...
The synchronization of dynamic multileaf collimator (DMLC) response with respiratory motion is criti...
Intrafraction motion has long been suspected of causing inaccuracies in the resultant dose delivered...
Background and objectives: To justify the concept of validating conformal versus intensity-modulated...
[[abstract]]During radiation therapy for lung cancer, the respiratory motion of the target increases...
Intrafractional motion and interfractional changes affect the accuracy of the delivered dose in radi...
Introduction: During free-breathing arbitrary phase, a mean motion reconstruction is acquired using ...
PurposeRestricted studies comparing different dose rate parameters are available while ITV-based VMA...
Intra-fraction respiration motion during radiation delivery presents a major challenge to radiation ...
Purpose: The purpose of present study was to experimentally evaluate the dosimetric uncertainties in...
Objective: During precision irradiation of a preclinical lung tumour model, the tumour is subject to...
This study evaluated the effect of respiratory movement on field-in-field (FIF) forward intensity-mo...
Purpose: Intrafractional respiratory motion is a concern for lung tumor radiotherapy but full evalua...
This study aims to investigate the utility of 1-D convolution as a predictive method to quantify the...
Background/purpose: Intensity-modulated proton therapy (IMPT) dose distributions can be severely deg...
The dose of a real tumor target volume and surrounding organs at risk (OARs) under the effect of res...
The synchronization of dynamic multileaf collimator (DMLC) response with respiratory motion is criti...