\u3cp\u3eSeveral institutes are currently working on the development of a radiotherapy treatment system with online MR imaging (MRI) modality. The main difference between their designs is the magnetic field strength of the MRI system. While we have chosen a 1.5 Tesla (T) magnetic field strength, the Cross Cancer Institute in Edmonton will be using a 0.2 T MRI scanner and the company Viewray aims to use 0.3 T. The magnetic field strength will affect the severity of magnetic field dose effects, such as the electron return effect (ERE): considerable dose increase at tissue air boundaries due to returning electrons. This paper has investigated how the ERE dose increase depends on the magnetic field strength. Therefore, four situations where the...
The vision of accurate real-time image-guided radiotherapy (RT) has led to the development of MR-Lin...
Background and purpose To present experimental evidence of lung dose enhancement effects caused by s...
Background and purpose There are concerns that radiotherapy doses delivered in a magnetic field migh...
At the UMC Utrecht, together with Elekta Oncology and Philips Research, we are developing a combined...
\u3cp\u3eIn the framework of the development of the integration of a MRI-scanner with a linear accel...
\u3cp\u3eThe MRI-linear accelerator system, currently being developed, is designed such that the pat...
\u3cp\u3eAt the UMC Utrecht, in collaboration with Elekta and Philips Research Hamburg, we are devel...
MR-guided radiation therapy (MRgRT) provides benefits such as superior soft tissue contrast, no imag...
Background: Magnetic resonance imaging (MRI)-guided radiotherapy is a promising image-guided cancer ...
BACKGROUND AND PURPOSE: To present experimental evidence of lung dose enhancement effects caused by ...
\u3cp\u3eIntegrating magnetic resonance imaging (MRI) functionality with a radiotherapy accelerator ...
It has been shown experimentally that the focusing provided by a longitudinal non-uniform high magne...
New hybrid radiotherapy treatment systems combining an MRI scanner with a source of ionizing radiati...
Purpose: To report on significant dose enhancement effects caused by magnetic fields aligned paralle...
\u3cp\u3eA combined system of a 6 MV linear accelerator and a 1.5 T MRI scanner is currently being d...
The vision of accurate real-time image-guided radiotherapy (RT) has led to the development of MR-Lin...
Background and purpose To present experimental evidence of lung dose enhancement effects caused by s...
Background and purpose There are concerns that radiotherapy doses delivered in a magnetic field migh...
At the UMC Utrecht, together with Elekta Oncology and Philips Research, we are developing a combined...
\u3cp\u3eIn the framework of the development of the integration of a MRI-scanner with a linear accel...
\u3cp\u3eThe MRI-linear accelerator system, currently being developed, is designed such that the pat...
\u3cp\u3eAt the UMC Utrecht, in collaboration with Elekta and Philips Research Hamburg, we are devel...
MR-guided radiation therapy (MRgRT) provides benefits such as superior soft tissue contrast, no imag...
Background: Magnetic resonance imaging (MRI)-guided radiotherapy is a promising image-guided cancer ...
BACKGROUND AND PURPOSE: To present experimental evidence of lung dose enhancement effects caused by ...
\u3cp\u3eIntegrating magnetic resonance imaging (MRI) functionality with a radiotherapy accelerator ...
It has been shown experimentally that the focusing provided by a longitudinal non-uniform high magne...
New hybrid radiotherapy treatment systems combining an MRI scanner with a source of ionizing radiati...
Purpose: To report on significant dose enhancement effects caused by magnetic fields aligned paralle...
\u3cp\u3eA combined system of a 6 MV linear accelerator and a 1.5 T MRI scanner is currently being d...
The vision of accurate real-time image-guided radiotherapy (RT) has led to the development of MR-Lin...
Background and purpose To present experimental evidence of lung dose enhancement effects caused by s...
Background and purpose There are concerns that radiotherapy doses delivered in a magnetic field migh...