PURPOSE: The purpose of this study was to quantify the frequency and clinical severity of quality deficiencies in intensity modulated radiation therapy (IMRT) planning in the Radiation Therapy Oncology Group 0126 protocol. METHODS AND MATERIALS: A total of 219 IMRT patients from the high-dose arm (79.2 Gy) of RTOG 0126 were analyzed. To quantify plan quality, we used established knowledge-based methods for patient-specific dose-volume histogram (DVH) prediction of organs at risk and a Lyman-Kutcher-Burman (LKB) model for grade ≥2 rectal complications to convert DVHs into normal tissue complication probabilities (NTCPs). The LKB model was validated by fitting dose-response parameters relative to observed toxicities. The 90th percentile (22 o...
Background: Radiotherapy has a significant side effect known as radiation-induced secondary cancer. ...
Purpose: NTCP analysis was performed with Lyman model to study the dose tolerance limits for radiati...
Mathematical models of normal tissue complication probability (NTCP) able to robustly predict radiat...
PURPOSE: The purpose of this study was to quantify the frequency and clinical severity of quality de...
PurposeThe purpose of this study was to quantify the frequency and clinical severity of quality defi...
Purpose: This study aimed to develop a quality control framework for intensity modulated radiation t...
The QUANTEC (quantitative analysis of normal tissue effects in the clinic) review summarizes the cur...
Clinical studies of the dependence of normal tissue response on dose-volume factors are often confus...
Purpose: To create a clinically viable dose-volume histogram (DVH) estimation model using the Varian...
The probabilities of developing radiation-induced normal tissue complications and second primary can...
This work has been partially supported by French National Research Agency (ANR) through project TIGR...
SummaryPurposeTo review medical literature data on tolerance doses for a number of radiosensitive or...
PurposeNormal tissue complication probability (NTCP) of the rectum, bladder, urethra, and femoral he...
In clinical practice, evaluation of clinical efficacy of treatment planning stems from the radiation...
Radiation therapy dosimetry software now frequently incorporates biological predictions of the proba...
Background: Radiotherapy has a significant side effect known as radiation-induced secondary cancer. ...
Purpose: NTCP analysis was performed with Lyman model to study the dose tolerance limits for radiati...
Mathematical models of normal tissue complication probability (NTCP) able to robustly predict radiat...
PURPOSE: The purpose of this study was to quantify the frequency and clinical severity of quality de...
PurposeThe purpose of this study was to quantify the frequency and clinical severity of quality defi...
Purpose: This study aimed to develop a quality control framework for intensity modulated radiation t...
The QUANTEC (quantitative analysis of normal tissue effects in the clinic) review summarizes the cur...
Clinical studies of the dependence of normal tissue response on dose-volume factors are often confus...
Purpose: To create a clinically viable dose-volume histogram (DVH) estimation model using the Varian...
The probabilities of developing radiation-induced normal tissue complications and second primary can...
This work has been partially supported by French National Research Agency (ANR) through project TIGR...
SummaryPurposeTo review medical literature data on tolerance doses for a number of radiosensitive or...
PurposeNormal tissue complication probability (NTCP) of the rectum, bladder, urethra, and femoral he...
In clinical practice, evaluation of clinical efficacy of treatment planning stems from the radiation...
Radiation therapy dosimetry software now frequently incorporates biological predictions of the proba...
Background: Radiotherapy has a significant side effect known as radiation-induced secondary cancer. ...
Purpose: NTCP analysis was performed with Lyman model to study the dose tolerance limits for radiati...
Mathematical models of normal tissue complication probability (NTCP) able to robustly predict radiat...