The aim of this study was to investigate potential dose reductions to the heart, left anterior descending coronary artery (LAD), and ipsilateral lung for left-sided breast cancer using visually guided deep inspiration breath-hold (DIBH) with the optical surface scanning system Catalyst™, and how these potential dosimetric benefits are affected by intrafractional motion in between breath holds. For both DIBH and free breathing (FB), treatment plans were created for 20 tangential and 20 locoregional left-sided breast cancer patients. During DIBH treatment, beam-on was triggered by a region of interest on the xiphoid process using a 3 mm gating window. Using a novel nonrigid algorithm, the Catalyst™ system allows for simultaneous real-time tra...
The dose delivered to the left anterior descending artery (LAD) in radiotherapy of left-sided breast...
The purpose of this study was to determine if using deep inspiration breath hold (DIBH) on right sid...
Background: Deep inspiration breath hold (DIBH) for radiotherapy of left-sided breast cancer patient...
The aim of this study was to investigate potential dose reductions to the heart, left anterior desce...
Deep inspiration breath hold (DIBH) in left‐sided breast cancer radiotherapy is a technique to reduc...
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...
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 evaluate the use of 3D optical surface imaging as a surrogate for respiratory gated deep...
Deep inspiration breath-hold (DIBH) radiotherapy for left-sided breast cancer can reduce cardiac exp...
Deep inspiration breath-hold (DIBH) radiotherapy for left-sided breast cancer can reduce cardiac exp...
The dose delivered to the left anterior descending artery (LAD) in radiotherapy of left-sided breast...
The purpose of this study was to determine if using deep inspiration breath hold (DIBH) on right sid...
Background: Deep inspiration breath hold (DIBH) for radiotherapy of left-sided breast cancer patient...
The aim of this study was to investigate potential dose reductions to the heart, left anterior desce...
Deep inspiration breath hold (DIBH) in left‐sided breast cancer radiotherapy is a technique to reduc...
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...
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 evaluate the use of 3D optical surface imaging as a surrogate for respiratory gated deep...
Deep inspiration breath-hold (DIBH) radiotherapy for left-sided breast cancer can reduce cardiac exp...
Deep inspiration breath-hold (DIBH) radiotherapy for left-sided breast cancer can reduce cardiac exp...
The dose delivered to the left anterior descending artery (LAD) in radiotherapy of left-sided breast...
The purpose of this study was to determine if using deep inspiration breath hold (DIBH) on right sid...
Background: Deep inspiration breath hold (DIBH) for radiotherapy of left-sided breast cancer patient...