Dynamic contrast-enhanced 4-D MR renography has the potential for broad clinical applications, but suffers from respiratory motion that limits analysis and interpretation. Since each examination yields at least over 10 20 serial 3-D images of the abdomen, manual registration is prohibitively labor-intensive. Besides in-plane motion and translation, out-of-plane motion and rotation are observed in the image series. In this paper, a novel robust and automated technique for removing out-of-plane translation and rotation with sub-voxel accuracy in 4-D dynamic MR images is presented. The method was evaluated on simulated motion data derived directly from a clinical patient's data. The method was also tested on 24 clinical patient kidney data set...
A novel 4D level set framework was developed to segment dynamic MR images into the cortex, medulla a...
PurposeTo incorporate a newly developed shape-based motion estimation scheme into magnetic resonance...
BACKGROUND: To investigate if non-rigid image-registration reduces motion artifacts in triggered and...
Dynamic contrast-enhanced 4-D MR renography has the potential for broad clinical applications, but s...
Abstract. Dynamic contrast-enhanced 4-D MR renography has the potential for broad clinical applicati...
A novel four dimensional image analysis approach including registration and segmentation of dynamic ...
In this paper a novel approach for the registration and segmentation of dynamic contrast enhanced re...
5. SUMMARY & CONCLUSION We have employed new methods for 3D MR renography image registration inc...
Images of the kidneys using dynamic contrast enhanced magnetic resonance renography (DCE-MRR) contai...
Introduction Model-driven registration (MDR) is a general approach to remove patient motion in qu...
pre-printAltered renal function commonly affects patients with cirrhosis, a consequence of chronic l...
Functional studies are routinely performed to provide quantitative evaluations of renal function. Of...
Dynamic contrast enhanced magnetic resonance imaging (DCE-MRI) of the kidneys requires proper motion...
Dynamic contrast-enhanced magnetic resonance imaging (DCE-MRI) renography is a desirable kidney asse...
To measure cortical and medullary MR renograms, regions of interest (ROIs) are placed on the kidney ...
A novel 4D level set framework was developed to segment dynamic MR images into the cortex, medulla a...
PurposeTo incorporate a newly developed shape-based motion estimation scheme into magnetic resonance...
BACKGROUND: To investigate if non-rigid image-registration reduces motion artifacts in triggered and...
Dynamic contrast-enhanced 4-D MR renography has the potential for broad clinical applications, but s...
Abstract. Dynamic contrast-enhanced 4-D MR renography has the potential for broad clinical applicati...
A novel four dimensional image analysis approach including registration and segmentation of dynamic ...
In this paper a novel approach for the registration and segmentation of dynamic contrast enhanced re...
5. SUMMARY & CONCLUSION We have employed new methods for 3D MR renography image registration inc...
Images of the kidneys using dynamic contrast enhanced magnetic resonance renography (DCE-MRR) contai...
Introduction Model-driven registration (MDR) is a general approach to remove patient motion in qu...
pre-printAltered renal function commonly affects patients with cirrhosis, a consequence of chronic l...
Functional studies are routinely performed to provide quantitative evaluations of renal function. Of...
Dynamic contrast enhanced magnetic resonance imaging (DCE-MRI) of the kidneys requires proper motion...
Dynamic contrast-enhanced magnetic resonance imaging (DCE-MRI) renography is a desirable kidney asse...
To measure cortical and medullary MR renograms, regions of interest (ROIs) are placed on the kidney ...
A novel 4D level set framework was developed to segment dynamic MR images into the cortex, medulla a...
PurposeTo incorporate a newly developed shape-based motion estimation scheme into magnetic resonance...
BACKGROUND: To investigate if non-rigid image-registration reduces motion artifacts in triggered and...