The aim of the study is to use Planned Dose Perturbation (PDPâ„¢) measurement-guided reconstruction method to estimate dynamic 4D dose and evaluate both 3D dose and DVH changes caused by target motion resulting from respiration. Five patients of Ca lung were selected for the study. Target and Organ at risks were (OARs) delineated on 4DCT data set of each patient. Dose of moving target vs. stationary target were simulated and compared for OARs and target by analyzing 3D dose and DVH(Dose Volume Histogram).There was almost 3.5% higher target maximum doses measured with moving target after applying the target motion trajectory data as compared to the stationary target whereas OARs doses were comparable. The results, clinically signifies ...
Abstract Background Due to the heterogeneity of patient’s individual respiratory motion pattern in l...
The interplay between respiration-related tumour motion and modulated treatment delivery such as vol...
BACKGROUND: The advances in image guidance and capability of highly conformal dose deliveries made p...
[[abstract]]During radiation therapy for lung cancer, the respiratory motion of the target increases...
PURPOSE Respiratory motion is a non-negligible source of uncertainty in radiotherapy. A common appr...
Radiotherapy of lung and liver lesions has changed from normofractioned 3D-CRT to stereotactic treat...
PURPOSE:To develop a 4D dose reconstruction method and to evaluate the delivered dose in respiratory...
PURPOSE: In particle therapy, conventional treatment planning systems rely on an imaging representat...
BACKGROUND: Organ motion during treatment delivery in radiotherapy (RT) may lead to deterioration o...
Introduction: One of the major challenges of delivering intensity modulated radiation therapy (IMR...
The dose of a real tumor target volume and surrounding organs at risk (OARs) under the effect of res...
In radiotherapy, conforming the high dose to the tumor is of special importance to avoid toxicity in...
PURPOSE:Irradiation of a moving target with a scanning beam requires a comprehensive understanding o...
PURPOSE: To evaluate a novel 4D Monte Carlo simulation tool by comparing calculations to physical me...
Purpose To quantify 4DCBCT dose calculation accuracy of lung SBRT plans by comparing the calculated ...
Abstract Background Due to the heterogeneity of patient’s individual respiratory motion pattern in l...
The interplay between respiration-related tumour motion and modulated treatment delivery such as vol...
BACKGROUND: The advances in image guidance and capability of highly conformal dose deliveries made p...
[[abstract]]During radiation therapy for lung cancer, the respiratory motion of the target increases...
PURPOSE Respiratory motion is a non-negligible source of uncertainty in radiotherapy. A common appr...
Radiotherapy of lung and liver lesions has changed from normofractioned 3D-CRT to stereotactic treat...
PURPOSE:To develop a 4D dose reconstruction method and to evaluate the delivered dose in respiratory...
PURPOSE: In particle therapy, conventional treatment planning systems rely on an imaging representat...
BACKGROUND: Organ motion during treatment delivery in radiotherapy (RT) may lead to deterioration o...
Introduction: One of the major challenges of delivering intensity modulated radiation therapy (IMR...
The dose of a real tumor target volume and surrounding organs at risk (OARs) under the effect of res...
In radiotherapy, conforming the high dose to the tumor is of special importance to avoid toxicity in...
PURPOSE:Irradiation of a moving target with a scanning beam requires a comprehensive understanding o...
PURPOSE: To evaluate a novel 4D Monte Carlo simulation tool by comparing calculations to physical me...
Purpose To quantify 4DCBCT dose calculation accuracy of lung SBRT plans by comparing the calculated ...
Abstract Background Due to the heterogeneity of patient’s individual respiratory motion pattern in l...
The interplay between respiration-related tumour motion and modulated treatment delivery such as vol...
BACKGROUND: The advances in image guidance and capability of highly conformal dose deliveries made p...