Lung tumors treated in breath-hold are subject to inter- and intra-breath-hold variations, which makes tumor position monitoring during each breath-hold important. A markerless technique is desirable, but limited tumor visibility on kV images makes this challenging. We evaluated if template matching + triangulation of kV projection images acquired during breath-hold stereotactic treatments could determine 3D tumor position. Band-pass filtering and/or digital tomosynthesis (DTS) were used as image pre-filtering/enhancement techniques. On-board kV images continuously acquired during volumetric modulated arc irradiation of (i) a 3D-printed anthropomorphic thorax phantom with three lung tumors (n = 6 stationary datasets, n = 2 gradually moving)...
Purpose/Objective(s)To achieve high treatment accuracy in respiratory-gated radiation therapy, it is...
Management of lung tumor motion is a challenging and important problem for modern, highly conformal ...
PURPOSE: In this work, three-dimensional (3D) motion of lung tumors during radiotherapy in real time...
Purpose: Accurate verification of tumor position during irradiation could reduce the probability of ...
Background and purpose: Positional verification during single fraction lung SBRT could increase conf...
The ability to monitor tumor motion without implanted markers can potentially enable broad access to...
Purpose: Real time lung tumor motion tracking allows for target dose escalation while simultaneously...
Background and purpose: Central lung stereotactic body radiotherapy (SBRT) can cause proximal bronch...
In this paper we propose a novel method for tracking the respiratory phase and 3D tumor position in ...
Template-based matching algorithms are currently being considered for markerless motion tracking of ...
International audienceTumor motion caused by respiration is an important issue in image-guided radio...
PURPOSE: Tomotherapy MV-CT acquisitions of lung tumors lead to artifacts due to breathing-related mo...
Lung cancer is the most deadly cancer in the United States. Radiation therapy uses ionizing radiatio...
A novel method was developed to track lung tumor motion in real time during radiation therapy with t...
BACKGROUND AND PURPOSE: Proof of tumor position during stereotactic body radiotherapy (SBRT) deliver...
Purpose/Objective(s)To achieve high treatment accuracy in respiratory-gated radiation therapy, it is...
Management of lung tumor motion is a challenging and important problem for modern, highly conformal ...
PURPOSE: In this work, three-dimensional (3D) motion of lung tumors during radiotherapy in real time...
Purpose: Accurate verification of tumor position during irradiation could reduce the probability of ...
Background and purpose: Positional verification during single fraction lung SBRT could increase conf...
The ability to monitor tumor motion without implanted markers can potentially enable broad access to...
Purpose: Real time lung tumor motion tracking allows for target dose escalation while simultaneously...
Background and purpose: Central lung stereotactic body radiotherapy (SBRT) can cause proximal bronch...
In this paper we propose a novel method for tracking the respiratory phase and 3D tumor position in ...
Template-based matching algorithms are currently being considered for markerless motion tracking of ...
International audienceTumor motion caused by respiration is an important issue in image-guided radio...
PURPOSE: Tomotherapy MV-CT acquisitions of lung tumors lead to artifacts due to breathing-related mo...
Lung cancer is the most deadly cancer in the United States. Radiation therapy uses ionizing radiatio...
A novel method was developed to track lung tumor motion in real time during radiation therapy with t...
BACKGROUND AND PURPOSE: Proof of tumor position during stereotactic body radiotherapy (SBRT) deliver...
Purpose/Objective(s)To achieve high treatment accuracy in respiratory-gated radiation therapy, it is...
Management of lung tumor motion is a challenging and important problem for modern, highly conformal ...
PURPOSE: In this work, three-dimensional (3D) motion of lung tumors during radiotherapy in real time...