Respiratory motion during dynamic radiotherapy may affect the absorbed dose distribution both by dose-reducing smoothing and by more complicated interplay effects. In this study we present a novel method to determine the relative importance of these two effects. For the two dynamic deliveries studied in this work, the expected target dose reduction due to the smoothing effect was estimated by measurements convolved by the motion function. Remaining absorbed dose differences were attributed to interplay effects between the motion of the gel phantom and the movement of the modulating MLC leaves during modulated arc radiotherapy. The total dosimetric effect due to breathing motion and dynamic MLC motion during VMAT delivery resulted in an aver...
Intrafraction organ motion during the dynamic delivery of intensity‐modulated radiation therapy (IMR...
Radiotherapy of lung and liver lesions has changed from normofractioned 3D-CRT to stereotactic treat...
Background/purpose: Intensity-modulated proton therapy (IMPT) dose distributions can be severely deg...
Respiratory motion during dynamic radiotherapy may affect the absorbed dose distribution both by dos...
The purpose of this study was to develop a method to simulate breathing motion induced interplay eff...
The purpose of this study was to investigate breathing-motion induced interplay effects for stereota...
This paper discusses the 3D dosimetric consequences of radiotherapy delivery during two kinds of mot...
The purpose of the study was to evaluate how breathing motion during tomotherapy (Accuray, CA, USA) ...
PURPOSE Respiratory motion is a non-negligible source of uncertainty in radiotherapy. A common appr...
The interplay between respiration-related tumour motion and modulated treatment delivery such as vol...
This study investigated the possible interplay effects arising from the treatment of moving targets ...
Pencil beam scanning is becoming a more common treatment modality. However, its ability to deal with...
Polymer gel dosimetry has been used since the 1990s, and several studies have shown that this detect...
The synchronization of dynamic multileaf collimator (DMLC) response with respiratory motion is criti...
BackgroundWe investigated the change of dose distributions in volumetric modulated arc therapy (VMAT...
Intrafraction organ motion during the dynamic delivery of intensity‐modulated radiation therapy (IMR...
Radiotherapy of lung and liver lesions has changed from normofractioned 3D-CRT to stereotactic treat...
Background/purpose: Intensity-modulated proton therapy (IMPT) dose distributions can be severely deg...
Respiratory motion during dynamic radiotherapy may affect the absorbed dose distribution both by dos...
The purpose of this study was to develop a method to simulate breathing motion induced interplay eff...
The purpose of this study was to investigate breathing-motion induced interplay effects for stereota...
This paper discusses the 3D dosimetric consequences of radiotherapy delivery during two kinds of mot...
The purpose of the study was to evaluate how breathing motion during tomotherapy (Accuray, CA, USA) ...
PURPOSE Respiratory motion is a non-negligible source of uncertainty in radiotherapy. A common appr...
The interplay between respiration-related tumour motion and modulated treatment delivery such as vol...
This study investigated the possible interplay effects arising from the treatment of moving targets ...
Pencil beam scanning is becoming a more common treatment modality. However, its ability to deal with...
Polymer gel dosimetry has been used since the 1990s, and several studies have shown that this detect...
The synchronization of dynamic multileaf collimator (DMLC) response with respiratory motion is criti...
BackgroundWe investigated the change of dose distributions in volumetric modulated arc therapy (VMAT...
Intrafraction organ motion during the dynamic delivery of intensity‐modulated radiation therapy (IMR...
Radiotherapy of lung and liver lesions has changed from normofractioned 3D-CRT to stereotactic treat...
Background/purpose: Intensity-modulated proton therapy (IMPT) dose distributions can be severely deg...