Objective Phantoms are often used to estimate the geometric accuracy in magnetic resonance imaging (MRI). However, the distortions may differ between anatomical and phantom images. This study aimed to investigate the applicability of a phantom-based and a test-subject-based method in evaluating geometric distortion present in clinical head-imaging sequences. Materials and methods We imaged a 3D-printed phantom and test subjects with two MRI scanners using two clinical head-imaging 3D sequences with varying patient-table positions and receiver bandwidths. The geometric distortions were evaluated through nonrigid registrations: the displaced acquisitions were compared against the ideal isocenter positioning, and the varied bandwidth volumes a...
Purpose: To evaluate the effect of magnetic resonance (MR) imaging (MRI) geometric distortions on he...
Recently, a 3-dimensional phantom that can provide a comprehensive, accurate and complete measuremen...
A phantom that can be used for mapping geometric distortion in magnetic resonance imaging (MRI) is d...
Objective Phantoms are often used to estimate the geometric accuracy in magnetic resonance imaging (...
As magnetic resonance imaging (MRI) becomes increasingly integrated into radiotherapy (RT) for enhan...
Introduction: Image distortion is one of the major problems of magnetic resonance imagin...
Magnetic Resonance images (MRIs) are employed in brain Stereotactic Radiosurgery and Radiotherapy (S...
In this paper, we present the correction of the geometric distortion measured in the clinical magnet...
Magnetic Resonance images (MRIs) are employed in brain Stereotactic Radiosurgery and Radiotherapy (S...
Spatial distortion results in image deformation that can degrade accurate targeting and dose calcula...
Distortion in magnetic resonance images needs to be taken into account for the purposes of radiother...
Recently, a 3D phantom that can provide a comprehensive and accurate measurement of the geometric di...
Background and purpose: In neuro-oncology, high spatial accuracy is needed for clinically acceptable...
PurposeTo estimate the overall spatial distortion on clinical patient images for a 0.35 T MR-gu...
International audienceAbstractPurpose: Nowadays, many focal therapies use Magnetic Resonance (MR) im...
Purpose: To evaluate the effect of magnetic resonance (MR) imaging (MRI) geometric distortions on he...
Recently, a 3-dimensional phantom that can provide a comprehensive, accurate and complete measuremen...
A phantom that can be used for mapping geometric distortion in magnetic resonance imaging (MRI) is d...
Objective Phantoms are often used to estimate the geometric accuracy in magnetic resonance imaging (...
As magnetic resonance imaging (MRI) becomes increasingly integrated into radiotherapy (RT) for enhan...
Introduction: Image distortion is one of the major problems of magnetic resonance imagin...
Magnetic Resonance images (MRIs) are employed in brain Stereotactic Radiosurgery and Radiotherapy (S...
In this paper, we present the correction of the geometric distortion measured in the clinical magnet...
Magnetic Resonance images (MRIs) are employed in brain Stereotactic Radiosurgery and Radiotherapy (S...
Spatial distortion results in image deformation that can degrade accurate targeting and dose calcula...
Distortion in magnetic resonance images needs to be taken into account for the purposes of radiother...
Recently, a 3D phantom that can provide a comprehensive and accurate measurement of the geometric di...
Background and purpose: In neuro-oncology, high spatial accuracy is needed for clinically acceptable...
PurposeTo estimate the overall spatial distortion on clinical patient images for a 0.35 T MR-gu...
International audienceAbstractPurpose: Nowadays, many focal therapies use Magnetic Resonance (MR) im...
Purpose: To evaluate the effect of magnetic resonance (MR) imaging (MRI) geometric distortions on he...
Recently, a 3-dimensional phantom that can provide a comprehensive, accurate and complete measuremen...
A phantom that can be used for mapping geometric distortion in magnetic resonance imaging (MRI) is d...