Template-based matching algorithms are currently being considered for markerless motion tracking of lung tumors. These algorithms use tumor templates derived from the planning CT scan, and track the motion of the tumor on single energy fluoroscopic images obtained at the time of treatment. In cases where bone may obstruct the view of the tumor, dual energy fluoroscopy may be used to enhance soft tissue contrast. The goal of this study is to predict which tumors will have a high degree of accuracy for markerless motion tracking based on radiomic features obtained from the planning CT scan, using peak-to-sidelobe ratio (PSR) as a surrogate of tracking accuracy. In this study, CT imaging data of 8 lung cancer patients were obtained and analyze...
BACKGROUND: Radiomics can quantify tumor phenotypic characteristics non-invasively by applying featu...
Lung cancer is the most deadly cancer in the United States. Radiation therapy uses ionizing radiatio...
Purpose/Objective To evaluate lung tumor motion during respiration and to describe factors affect...
Purpose/Objective(s): In particle beam therapy, accurate localization of the target tumor in presenc...
Purpose: Real time lung tumor motion tracking allows for target dose escalation while simultaneously...
Purpose Real-time, markerless localization of lung tumors with kV imaging is often inhibited by ribs...
The ability to monitor tumor motion without implanted markers can potentially enable broad access to...
Purpose/Objective(s): Radiation therapy in lung cancer relies on CT and functional imaging (FDG-PET)...
Purpose: Tumor motion due to patient breathing is a factor that limits the accuracy of dose distribu...
Background and purpose: Positional verification during single fraction lung SBRT could increase conf...
According to the Center for Disease Control, more people die from lung cancer than any other cancer ...
Introduction: Avoiding the risks and costs involved with the surgical insertion of radio-opaque fidu...
PURPOSE:To evaluate the uncertainty of radiomics features from contrast-enhanced breath-hold helical...
Purpose/Objective(s): To achieve high treatment accuracy in respiratory-gated radiation therapy, it ...
Background: Accurate delivery of the prescribed dose to moving lung tumors is a key challenge in rad...
BACKGROUND: Radiomics can quantify tumor phenotypic characteristics non-invasively by applying featu...
Lung cancer is the most deadly cancer in the United States. Radiation therapy uses ionizing radiatio...
Purpose/Objective To evaluate lung tumor motion during respiration and to describe factors affect...
Purpose/Objective(s): In particle beam therapy, accurate localization of the target tumor in presenc...
Purpose: Real time lung tumor motion tracking allows for target dose escalation while simultaneously...
Purpose Real-time, markerless localization of lung tumors with kV imaging is often inhibited by ribs...
The ability to monitor tumor motion without implanted markers can potentially enable broad access to...
Purpose/Objective(s): Radiation therapy in lung cancer relies on CT and functional imaging (FDG-PET)...
Purpose: Tumor motion due to patient breathing is a factor that limits the accuracy of dose distribu...
Background and purpose: Positional verification during single fraction lung SBRT could increase conf...
According to the Center for Disease Control, more people die from lung cancer than any other cancer ...
Introduction: Avoiding the risks and costs involved with the surgical insertion of radio-opaque fidu...
PURPOSE:To evaluate the uncertainty of radiomics features from contrast-enhanced breath-hold helical...
Purpose/Objective(s): To achieve high treatment accuracy in respiratory-gated radiation therapy, it ...
Background: Accurate delivery of the prescribed dose to moving lung tumors is a key challenge in rad...
BACKGROUND: Radiomics can quantify tumor phenotypic characteristics non-invasively by applying featu...
Lung cancer is the most deadly cancer in the United States. Radiation therapy uses ionizing radiatio...
Purpose/Objective To evaluate lung tumor motion during respiration and to describe factors affect...