An international research consortium has been formed to facilitate evidence-based introduction of MR-guided radiotherapy (MR-linac) and to address how the MR-linac could be used to achieve an optimized radiation treatment approach to improve patients' survival, local, and regional tumor control and quality of life. The present paper describes the organizational structure of the clinical part of the MR-linac consortium. Furthermore, it elucidates why collaboration on this large project is necessary, and how a central data registry program will be implemented
Background: New technologies and techniques in radiation oncology and imaging offer opportunities to...
The pace of innovation in radiation oncology is high and the window of opportunity for evaluation na...
The new radiotherapy high field, 1.5 Tesla MRI-guided linear accelerator (MR-Linac) is being clinica...
An international research consortium has been formed to facilitate evidence-based introduction of MR...
An international research consortium has been formed to facilitate evidence-based introduction of MR...
BACKGROUND:Magnetic Resonance linear accelerator (MR-linac) systems represent a new type of technolo...
Advances in radiotherapy technologies have enabled more precise target guidance, improved treatment ...
Background: Analysis of Data to Advance Personalised Therapy with MR-Linac (ADAPT-MRL) is a multi-si...
Introduction: Radiation therapy (RT) remains to be one of the mainstays in the treatment of cancer. ...
PURPOSE: High-field magnetic resonance-linear accelerators (MR-Linacs), linear accelerators combined...
Background: Based on riskesdas data in 2013, the prevalence of cancer in Indonesia reached 1.4% or a...
Purpose: High-field magnetic resonance-linear accelerators (MR-Linacs), linear accelerators combined...
The 1.5T hybrid MRI/linear accelerator (MR-linac) has recently been introduced into clinical practic...
Purpose: Magnetic resonance image (MRI)-guided radiation therapy with the 1.5 Tesla magnetic resonan...
The Australian magnetic resonance imaging (MRI)-Linac program is a $16-million government-funded pro...
Background: New technologies and techniques in radiation oncology and imaging offer opportunities to...
The pace of innovation in radiation oncology is high and the window of opportunity for evaluation na...
The new radiotherapy high field, 1.5 Tesla MRI-guided linear accelerator (MR-Linac) is being clinica...
An international research consortium has been formed to facilitate evidence-based introduction of MR...
An international research consortium has been formed to facilitate evidence-based introduction of MR...
BACKGROUND:Magnetic Resonance linear accelerator (MR-linac) systems represent a new type of technolo...
Advances in radiotherapy technologies have enabled more precise target guidance, improved treatment ...
Background: Analysis of Data to Advance Personalised Therapy with MR-Linac (ADAPT-MRL) is a multi-si...
Introduction: Radiation therapy (RT) remains to be one of the mainstays in the treatment of cancer. ...
PURPOSE: High-field magnetic resonance-linear accelerators (MR-Linacs), linear accelerators combined...
Background: Based on riskesdas data in 2013, the prevalence of cancer in Indonesia reached 1.4% or a...
Purpose: High-field magnetic resonance-linear accelerators (MR-Linacs), linear accelerators combined...
The 1.5T hybrid MRI/linear accelerator (MR-linac) has recently been introduced into clinical practic...
Purpose: Magnetic resonance image (MRI)-guided radiation therapy with the 1.5 Tesla magnetic resonan...
The Australian magnetic resonance imaging (MRI)-Linac program is a $16-million government-funded pro...
Background: New technologies and techniques in radiation oncology and imaging offer opportunities to...
The pace of innovation in radiation oncology is high and the window of opportunity for evaluation na...
The new radiotherapy high field, 1.5 Tesla MRI-guided linear accelerator (MR-Linac) is being clinica...