Intrafractional motion and interfractional changes affect the accuracy of the delivered dose in radiotherapy, particularly in charged-particle radiotherapy. Most recent studies are focused on intrafractional motion (respiratory motion). Here, we report a quantitative simulation analysis of the effects of interfractional changes on water-equivalent pathlength (WEL) in charged-particle lung therapy. Serial four-dimensional (4D) CT scans were performed under free breathing conditions; the time span between the first and second 4DCT scans was five weeks. We quantified WEL changes between the first and second CT scans due to interfractional changes (tumor shrinkage and tissue density changes) and compared the particle-beam-stopping point between...
Objective. Periodic respiratory motion and inter-fraction variations are sources of geometric uncert...
PURPOSE: Pencil beam scanned proton therapy (PBS-PT) treatment quality might be compromised by inter...
[[abstract]]During radiation therapy for lung cancer, the respiratory motion of the target increases...
Background:To quantify water equivalent pathlength (WEL) variations due to both intrafractional and ...
Weekly serial 4DCT scans were acquired under free breathing conditions to assess water equivalent pa...
Purpose: Water equivalent path length (WEL) variations due to respiration can change the range of a ...
Intra-fraction respiration motion during radiation delivery presents a major challenge to radiation ...
Scanned ion beam therapy of lung tumors is severely limited in its clinical applicability by intrafr...
Intrafraction organ motion during the dynamic delivery of intensity‐modulated radiation therapy (IMR...
Purpose: Intrafractional respiratory motion is a concern for lung tumor radiotherapy but full evalua...
Purpose: For locally advanced-stage non-small cell lung cancer (NSCLC), inter-fraction target motion...
Purpose/Objective(s): Intrafractional motion affects the accuracy of the delivered dose in radiother...
Introduction: One of advantage in the use of heavy charged particles for radiotherapy is the high po...
Background/purpose: Intensity-modulated proton therapy (IMPT) dose distributions can be severely deg...
Introduction: Prostate treatment by charged particlesoffers a high conformity due to their character...
Objective. Periodic respiratory motion and inter-fraction variations are sources of geometric uncert...
PURPOSE: Pencil beam scanned proton therapy (PBS-PT) treatment quality might be compromised by inter...
[[abstract]]During radiation therapy for lung cancer, the respiratory motion of the target increases...
Background:To quantify water equivalent pathlength (WEL) variations due to both intrafractional and ...
Weekly serial 4DCT scans were acquired under free breathing conditions to assess water equivalent pa...
Purpose: Water equivalent path length (WEL) variations due to respiration can change the range of a ...
Intra-fraction respiration motion during radiation delivery presents a major challenge to radiation ...
Scanned ion beam therapy of lung tumors is severely limited in its clinical applicability by intrafr...
Intrafraction organ motion during the dynamic delivery of intensity‐modulated radiation therapy (IMR...
Purpose: Intrafractional respiratory motion is a concern for lung tumor radiotherapy but full evalua...
Purpose: For locally advanced-stage non-small cell lung cancer (NSCLC), inter-fraction target motion...
Purpose/Objective(s): Intrafractional motion affects the accuracy of the delivered dose in radiother...
Introduction: One of advantage in the use of heavy charged particles for radiotherapy is the high po...
Background/purpose: Intensity-modulated proton therapy (IMPT) dose distributions can be severely deg...
Introduction: Prostate treatment by charged particlesoffers a high conformity due to their character...
Objective. Periodic respiratory motion and inter-fraction variations are sources of geometric uncert...
PURPOSE: Pencil beam scanned proton therapy (PBS-PT) treatment quality might be compromised by inter...
[[abstract]]During radiation therapy for lung cancer, the respiratory motion of the target increases...