Background: The present study contrasts the accuracy of different reconstructed models with distinctive segmentation methods performed by various experts. Seven research groups reconstructed nine 3D models of one human femur based on an acquired CT image using their own computational methods. As a reference model for accuracy assessment, a 3D surface scan of the human femur was created using an optical measuring system. Prior to comparison, the femur was divided into four areas; “neck and greater trochanter”, “proximal metaphysis”, “diaphysis”, and “distal metaphysis”. The deviation analysis was carried out in GEOMAGIC studio v.2013 software. Results: The results revealed that the highest deviation errors occurred in “neck and greater troch...
Femur geometric models were reconstructed from complete sets of bone segmentations, three incomplete...
Development of Finite Element (FE) modelling techniques has allowed the creation of 3D models based ...
Contains fulltext : 88094.pdf (publisher's version ) (Closed access)Bone specific,...
Abstract Background The present study contrasts the accuracy of different reconstructed models with ...
© 2015 IPEM. Computed tomography provides high contrast imaging of the joint anatomy and is used rou...
Background Breuckmann optical scanning, Metris laser scanning and CT are general devices used for mo...
The aim of this study is to compare two different methods of frontal bone surface model acquisition....
Abstract Background Both CT and MRI are complementary to each other in that CT can produce a distinc...
The use of three-dimensional imaging methodologies in new applications in the orthopaedic field has ...
Seventeen bones (sixteen cadaveric bones and one plastic bone) were used to validate a method for re...
Orthopaedic implants are typically designed using accurate computer tomography (CT) based 3D models ...
A patient-specific surface model of the proximal femur plays an important role in planning and suppo...
International audienceIn this study, we investigated a method allowing the determination of the femu...
Orthopaedic fracture fixation implants are increasingly being designed using accurate 3D models of l...
International audienceIn the context of patient-specific 3D bone reconstruction, enhancing the surfa...
Femur geometric models were reconstructed from complete sets of bone segmentations, three incomplete...
Development of Finite Element (FE) modelling techniques has allowed the creation of 3D models based ...
Contains fulltext : 88094.pdf (publisher's version ) (Closed access)Bone specific,...
Abstract Background The present study contrasts the accuracy of different reconstructed models with ...
© 2015 IPEM. Computed tomography provides high contrast imaging of the joint anatomy and is used rou...
Background Breuckmann optical scanning, Metris laser scanning and CT are general devices used for mo...
The aim of this study is to compare two different methods of frontal bone surface model acquisition....
Abstract Background Both CT and MRI are complementary to each other in that CT can produce a distinc...
The use of three-dimensional imaging methodologies in new applications in the orthopaedic field has ...
Seventeen bones (sixteen cadaveric bones and one plastic bone) were used to validate a method for re...
Orthopaedic implants are typically designed using accurate computer tomography (CT) based 3D models ...
A patient-specific surface model of the proximal femur plays an important role in planning and suppo...
International audienceIn this study, we investigated a method allowing the determination of the femu...
Orthopaedic fracture fixation implants are increasingly being designed using accurate 3D models of l...
International audienceIn the context of patient-specific 3D bone reconstruction, enhancing the surfa...
Femur geometric models were reconstructed from complete sets of bone segmentations, three incomplete...
Development of Finite Element (FE) modelling techniques has allowed the creation of 3D models based ...
Contains fulltext : 88094.pdf (publisher's version ) (Closed access)Bone specific,...