Objective: To present a novel method for automated segmentation of knee menisci from MRIs. To evaluate quantitative meniscal biomarkers for osteoarthritis (OA) estimated thereof. Method: A segmentation method employing convolutional neural networks in combination with statistical shape models was developed. Accuracy was evaluated on 88 manual segmentations. Meniscal volume, tibial coverage, and meniscal extrusion were computed and tested for differences between groups of OA, joint space narrowing (JSN), and WOMAC pain. Correlation between computed meniscal extrusion and MRI Osteoarthritis Knee Score (MOAKS) experts' readings was evaluated for 600 subjects. Suitability of biomarkers for predicting incident radiographic OA from baseline to 24...
Background: Automatic diagnostic systems in medical imaging provide useful information to support ra...
Objective: To determine the association of different types of meniscal pathology with common measure...
For this project, I will develop an algorithm to segment the knee which consists of the femur, tibia...
Objective: To present a novel method for automated segmentation of knee menisci from MRIs. To evalua...
OBJECTIVE: To validate an automatic scheme for the segmentation and quantitative analysis of the med...
SummaryObjectiveTo validate an automatic scheme for the segmentation and quantitative analysis of th...
SummaryObjectiveThe goal of this study was to develop an algorithm to semi-automatically segment the...
Menisci are tissues that enable mobility and absorb excess loads on the knee. Problems in meniscus c...
For this project an algorithm was developed that is able to successfully segment the knee which incl...
Convolutional neural networks (CNNs) are the state-of-the-art for automated assessment of knee osteo...
Pathologic processes active in early-stage knee joint osteoarthritis may also affect the integrity o...
OBJECTIVE: To validate an automatic scheme for the segmentation and quantitative analysis of the med...
To explore whether quantitative, three-dimensional measurements of meniscal position and size are as...
ObjectiveTo quantitatively evaluate the position, size, and shape of the menisci in subjects with ra...
Magnetic resonance imaging (MRI) is becoming clinically important in the assessment of joint injury ...
Background: Automatic diagnostic systems in medical imaging provide useful information to support ra...
Objective: To determine the association of different types of meniscal pathology with common measure...
For this project, I will develop an algorithm to segment the knee which consists of the femur, tibia...
Objective: To present a novel method for automated segmentation of knee menisci from MRIs. To evalua...
OBJECTIVE: To validate an automatic scheme for the segmentation and quantitative analysis of the med...
SummaryObjectiveTo validate an automatic scheme for the segmentation and quantitative analysis of th...
SummaryObjectiveThe goal of this study was to develop an algorithm to semi-automatically segment the...
Menisci are tissues that enable mobility and absorb excess loads on the knee. Problems in meniscus c...
For this project an algorithm was developed that is able to successfully segment the knee which incl...
Convolutional neural networks (CNNs) are the state-of-the-art for automated assessment of knee osteo...
Pathologic processes active in early-stage knee joint osteoarthritis may also affect the integrity o...
OBJECTIVE: To validate an automatic scheme for the segmentation and quantitative analysis of the med...
To explore whether quantitative, three-dimensional measurements of meniscal position and size are as...
ObjectiveTo quantitatively evaluate the position, size, and shape of the menisci in subjects with ra...
Magnetic resonance imaging (MRI) is becoming clinically important in the assessment of joint injury ...
Background: Automatic diagnostic systems in medical imaging provide useful information to support ra...
Objective: To determine the association of different types of meniscal pathology with common measure...
For this project, I will develop an algorithm to segment the knee which consists of the femur, tibia...