The goal of this study is to quantify changes in knee joint contact behavior following varying degrees of the medial partial meniscectomy. A previously validated 3D finite element model was used to simulate 11 different meniscectomies. The accompanying changes in the contact pressure on the superior surface of the menisci and tibial plateau were quantified as was the axial strain in the menisci and articular cartilage. The percentage of medial meniscus removed was linearly correlated with maximum contact pressure, mean contact pressure, and contact area. The lateral hemi-joint was minimally affected by the simulated medial meniscectomies. The location of maximum strain and location of maximum contact pressure did not change with varying deg...
AbstractSince meniscal geometry affects the cartilage contact pressures, it is essential to carefull...
The article presents advanced computer simulations aimed at the accurate modelling of human tibio-fe...
Articular cartilage covers the articulating ends of diarthrodial joints. It plays a vital role in th...
The goal of this study is to quantify changes in knee joint contact behavior following varying degre...
OZKAN, Arif/0000-0002-1288-6166; Atmaca, Halil/0000-0001-5820-6456WOS: 000327084800004PubMed: 231927...
Abstract Objective To establish a finite element model of meniscus horizontal cleavage and partial r...
In an effort to prevent degeneration of articular cartilage associated with meniscectomies, both men...
In an effort to prevent degeneration of articular cartilage associated with meniscectomies, both men...
Evaluation of the biomechanical interaction between meniscus and cartilage in medial compartment kne...
Abstract—Studying the mechanics of the knee joint has direct implications in understanding the state...
Contains fulltext : 154259.pdf (publisher's version ) (Open Access)Since meniscal ...
As a step towards developing a finite element model of the knee that can be used to study how the va...
Meniscal root attachments function to anchor the menisci to the tibia and prevent meniscal extrusion...
Partial meniscectomy is believed to change the biomechanics of the knee joint through alterations in...
AbstractSince meniscal geometry affects the cartilage contact pressures, it is essential to carefull...
The article presents advanced computer simulations aimed at the accurate modelling of human tibio-fe...
Articular cartilage covers the articulating ends of diarthrodial joints. It plays a vital role in th...
The goal of this study is to quantify changes in knee joint contact behavior following varying degre...
OZKAN, Arif/0000-0002-1288-6166; Atmaca, Halil/0000-0001-5820-6456WOS: 000327084800004PubMed: 231927...
Abstract Objective To establish a finite element model of meniscus horizontal cleavage and partial r...
In an effort to prevent degeneration of articular cartilage associated with meniscectomies, both men...
In an effort to prevent degeneration of articular cartilage associated with meniscectomies, both men...
Evaluation of the biomechanical interaction between meniscus and cartilage in medial compartment kne...
Abstract—Studying the mechanics of the knee joint has direct implications in understanding the state...
Contains fulltext : 154259.pdf (publisher's version ) (Open Access)Since meniscal ...
As a step towards developing a finite element model of the knee that can be used to study how the va...
Meniscal root attachments function to anchor the menisci to the tibia and prevent meniscal extrusion...
Partial meniscectomy is believed to change the biomechanics of the knee joint through alterations in...
AbstractSince meniscal geometry affects the cartilage contact pressures, it is essential to carefull...
The article presents advanced computer simulations aimed at the accurate modelling of human tibio-fe...
Articular cartilage covers the articulating ends of diarthrodial joints. It plays a vital role in th...