PURPOSE: We present the first clinical implementation of a real-time six-degree of freedom (6DoF) Kilovoltage Intrafraction Monitoring (KIM) system which tracks the cancer target translational and rotational motions during treatment. The method was applied to measure and correct for target motion during stereotactic body radiotherapy (SBRT) for prostate cancer. METHODS: Patient: A patient with prostate adenocarcinoma undergoing SBRT with 36.25Gy, delivered in 5 fractions was enrolled in the study. 6DoF KIM technology: 2D positions of three implanted gold markers in each of the kV images (125kV, 10mA at 11Hz) were acquired continuously during treatment. The 2D→3D target position estimation was based on a probability distribution function. T...
© Published under licence by IOP Publishing Ltd. An in-house developed program for real-time reconst...
PURPOSE: Intrafraction rotation of more than 45° and 25° has been observed for lung and prostate tum...
© 2018 Institute of Physics and Engineering in Medicine. Increasing evidence shows that intrafractio...
Target rotation can considerably impact the delivered radiotherapy dose depending on the tumour shap...
PURPOSE: Kilovoltage intrafraction monitoring (KIM) is a new real-time 3-dimensional image guidance ...
BACKGROUND AND PURPOSE: To perform a quantitative analysis of the accuracy and precision of Kilovolt...
PURPOSE: Kilovoltage intrafraction monitoring (KIM) is a real-time image guidance method that uses...
© 2017 Elsevier B.V. Background and purpose: To perform a quantitative analysis of the accuracy and ...
Purpose: Kilovoltage intrafraction monitoring (KIM) allows for real-time image guidance for tracking...
PURPOSE: Tumor positional uncertainty has been identified as a major issue that deteriorates the eff...
In cancer radiotherapy, there is a need for a highly accurate, widely applicable, cost effective rea...
PURPOSE: Kilovoltage intrafraction monitoring (KIM) is a real-time 3D tumor monitoring system for ca...
Treating cancer safely and effectively using radiotherapy requires accurate targeting of the tumour....
PURPOSE: Until now, real-time image guided adaptive radiation therapy (IGART) has been the domain of...
Purpose: Kilovoltage intrafraction monitoring (KIM) is a novel software platform implemented on stan...
© Published under licence by IOP Publishing Ltd. An in-house developed program for real-time reconst...
PURPOSE: Intrafraction rotation of more than 45° and 25° has been observed for lung and prostate tum...
© 2018 Institute of Physics and Engineering in Medicine. Increasing evidence shows that intrafractio...
Target rotation can considerably impact the delivered radiotherapy dose depending on the tumour shap...
PURPOSE: Kilovoltage intrafraction monitoring (KIM) is a new real-time 3-dimensional image guidance ...
BACKGROUND AND PURPOSE: To perform a quantitative analysis of the accuracy and precision of Kilovolt...
PURPOSE: Kilovoltage intrafraction monitoring (KIM) is a real-time image guidance method that uses...
© 2017 Elsevier B.V. Background and purpose: To perform a quantitative analysis of the accuracy and ...
Purpose: Kilovoltage intrafraction monitoring (KIM) allows for real-time image guidance for tracking...
PURPOSE: Tumor positional uncertainty has been identified as a major issue that deteriorates the eff...
In cancer radiotherapy, there is a need for a highly accurate, widely applicable, cost effective rea...
PURPOSE: Kilovoltage intrafraction monitoring (KIM) is a real-time 3D tumor monitoring system for ca...
Treating cancer safely and effectively using radiotherapy requires accurate targeting of the tumour....
PURPOSE: Until now, real-time image guided adaptive radiation therapy (IGART) has been the domain of...
Purpose: Kilovoltage intrafraction monitoring (KIM) is a novel software platform implemented on stan...
© Published under licence by IOP Publishing Ltd. An in-house developed program for real-time reconst...
PURPOSE: Intrafraction rotation of more than 45° and 25° has been observed for lung and prostate tum...
© 2018 Institute of Physics and Engineering in Medicine. Increasing evidence shows that intrafractio...