In this paper, we present the development and application of current image processing techniques to perform MRI inter-subject comparison of knee cartilage thickness based on the registration of bone structures. Each point in the bone surface which is part of the bone–cartilage interface is assigned a cartilage thickness value. Cartilage and corresponding bone structures are segmented and their shapes interpolated to create isotropic voxels. Cartilage thicknesses are computed for each point in the bone– cartilage interfaces and transferred to the bone surfaces. Corresponding anatomic points are then computed for bone surfaces based on shape matching using 3D shape descriptors called shape contexts to register bones with affine and elastic tr...
Abstract Manual segmentation of articular cartilage from knee joint 3D magnetic resonance images (M...
Magnetic resonance imaging (MRI) is emerging as the method of choice for measuring cartilage loss in...
Abstract—This study aimed at developing a new automatic seg-mentation algorithm for human knee carti...
Osteoarthritis is one of the leading causes of pain and disability worldwide and a major health prob...
The detection of cartilage loss due to disease progression in Osteoarthritis remains a challenging p...
To perform cartilage quantitative analysis requires the accurate segmentation of each individual car...
In this paper, we present a segmentation scheme that automatically and accurately segments all the c...
For the observation of human joint cartilage, X-ray, computed tomography (CT) or magnetic resonance ...
The estimation of articular cartilage of knee plays an important role in determining osteoarthritis ...
Purpose Thinning of cartilage is a common manifestation of osteoarthritis. This study addresses the ...
SummaryObjectiveWe present a multi-dimensional framework for the visualization of femoral articular ...
AbstractObjective: This study assessed the three-dimensional accuracy of magnetic resonance imaging ...
We describe the application of a novel analysis method that provides detailed maps of changes in car...
Abstract. To perform cartilage quantitative analysis requires the accu-rate segmentation of each ind...
SummaryObjectiveTo assess the reliability and accuracy of manual and semi-automated segmentation met...
Abstract Manual segmentation of articular cartilage from knee joint 3D magnetic resonance images (M...
Magnetic resonance imaging (MRI) is emerging as the method of choice for measuring cartilage loss in...
Abstract—This study aimed at developing a new automatic seg-mentation algorithm for human knee carti...
Osteoarthritis is one of the leading causes of pain and disability worldwide and a major health prob...
The detection of cartilage loss due to disease progression in Osteoarthritis remains a challenging p...
To perform cartilage quantitative analysis requires the accurate segmentation of each individual car...
In this paper, we present a segmentation scheme that automatically and accurately segments all the c...
For the observation of human joint cartilage, X-ray, computed tomography (CT) or magnetic resonance ...
The estimation of articular cartilage of knee plays an important role in determining osteoarthritis ...
Purpose Thinning of cartilage is a common manifestation of osteoarthritis. This study addresses the ...
SummaryObjectiveWe present a multi-dimensional framework for the visualization of femoral articular ...
AbstractObjective: This study assessed the three-dimensional accuracy of magnetic resonance imaging ...
We describe the application of a novel analysis method that provides detailed maps of changes in car...
Abstract. To perform cartilage quantitative analysis requires the accu-rate segmentation of each ind...
SummaryObjectiveTo assess the reliability and accuracy of manual and semi-automated segmentation met...
Abstract Manual segmentation of articular cartilage from knee joint 3D magnetic resonance images (M...
Magnetic resonance imaging (MRI) is emerging as the method of choice for measuring cartilage loss in...
Abstract—This study aimed at developing a new automatic seg-mentation algorithm for human knee carti...