Background: The aim of the study is to evaluate the overall accuracy of the surface-guided radiotherapy (SGRT) workflow through a comprehensive commissioning and quality assurance procedures and assess the potential benefits of deep-inspiration breath-hold (DIBH) radiotherapy as a cardiac and lung dose reduction approach for left-sided breast cancer irradiation. Materials and methods: Accuracy and reproducibility of the optical surface scanner used for DIBH treatment were evaluated using different phantoms. Patient positioning accuracy and reproducibility of DIBH treatment were evaluated. Twenty patients were studied for treatment plan quality in target dose coverage and healthy organ sparing for the two different treatment techniques. Resu...
Deep inspiration breath hold (DIBH) in left‐sided breast cancer radiotherapy is a technique to reduc...
To investigate the heart position variability in deep-inspiration breath-hold (DIBH) radiation thera...
Background: We developed, applied, and prospectively evaluated a novel deep-inspiration breath-hold ...
Background: The aim of the study is to evaluate the overall accuracy of the surface-guided radiother...
To evaluate the use of 3D optical surface imaging as a surrogate for respiratory gated deep-inspirat...
To evaluate the use of 3D optical surface imaging as a surrogate for respiratory gated deep-inspirat...
To evaluate the use of 3D optical surface imaging as a surrogate for respiratory gated deep-inspirat...
Purpose: To evaluate the use of 3D optical surface imaging as a surrogate for respiratory gated deep...
Background: There is a potential for adverse cardiovascular effects in long-term breast cancer survi...
Background: There is a potential for adverse cardiovascular effects in long-term breast cancer survi...
Background: There is a potential for adverse cardiovascular effects in long-term breast cancer survi...
Background: There is a potential for adverse cardiovascular effects in long-term breast cancer survi...
PURPOSE: To determine the accuracy of a surface guided radiotherapy (SGRT) system for positioning of...
PURPOSE: To determine the accuracy of a surface guided radiotherapy (SGRT) system for positioning of...
Background and purpose: Real-time treatment monitoring with the electronic portal imaging device (EP...
Deep inspiration breath hold (DIBH) in left‐sided breast cancer radiotherapy is a technique to reduc...
To investigate the heart position variability in deep-inspiration breath-hold (DIBH) radiation thera...
Background: We developed, applied, and prospectively evaluated a novel deep-inspiration breath-hold ...
Background: The aim of the study is to evaluate the overall accuracy of the surface-guided radiother...
To evaluate the use of 3D optical surface imaging as a surrogate for respiratory gated deep-inspirat...
To evaluate the use of 3D optical surface imaging as a surrogate for respiratory gated deep-inspirat...
To evaluate the use of 3D optical surface imaging as a surrogate for respiratory gated deep-inspirat...
Purpose: To evaluate the use of 3D optical surface imaging as a surrogate for respiratory gated deep...
Background: There is a potential for adverse cardiovascular effects in long-term breast cancer survi...
Background: There is a potential for adverse cardiovascular effects in long-term breast cancer survi...
Background: There is a potential for adverse cardiovascular effects in long-term breast cancer survi...
Background: There is a potential for adverse cardiovascular effects in long-term breast cancer survi...
PURPOSE: To determine the accuracy of a surface guided radiotherapy (SGRT) system for positioning of...
PURPOSE: To determine the accuracy of a surface guided radiotherapy (SGRT) system for positioning of...
Background and purpose: Real-time treatment monitoring with the electronic portal imaging device (EP...
Deep inspiration breath hold (DIBH) in left‐sided breast cancer radiotherapy is a technique to reduc...
To investigate the heart position variability in deep-inspiration breath-hold (DIBH) radiation thera...
Background: We developed, applied, and prospectively evaluated a novel deep-inspiration breath-hold ...