Cells of the musculoskeletal system are known to respond to mechanical loading and chondrocytes within the cartilage are not an exception. However, understanding how joint level loads relate to cell level deformations, e.g. in the cartilage, is not a straightforward task. In this study, a multi-scale analysis pipeline was implemented to post-process the results of a macro-scale finite element (FE) tibiofemoral joint model to provide joint mechanics based displacement boundary conditions to micro-scale cellular FE models of the cartilage, for the purpose of characterizing chondrocyte deformations in relation to tibiofemoral joint loading. It was possible to identify the load distribution within the knee among its tissue structures and ultima...
The aim was to assess the role of the composition changes in the pericellular matrix (PCM) for the c...
The physis, or growth plate, is a complex disc-shaped cartilage structure that is responsible for lo...
The collagen network and proteoglycan matrix of articular cartilage are thought to play an important...
Cells of the musculoskeletal system are known to respond tomechanical loading and chondrocytes withi...
Articular cartilage experiences significant mechanical loads during daily activities. Healthy cartil...
Previous experimental studies have determined local strain fields for both healthy and degenerate ca...
Chondrocytes are responsible for the elaboration and maintenance of the extracellular (EC) matrix in...
The function of articular cartilage depends on its structure and composition, sensitively impaired i...
BACKGROUND: Mechanical conditioning has been widely used to attempt to enhance chondrocyte metabolis...
BackgroundMechanical conditioning has been widely used to attempt to enhance chondrocyte metabolism ...
AbstractIntroduction: Chondrocytes in articular cartilage utilize mechanical signals to regulate the...
Chondral lesions provide a potential risk factor for development of osteoarthritis. Despite the vari...
Characterization of the mechanical environment of cells in collagenous biological tissues during dif...
The aim was to assess the role of the composition changes in the pericellular matrix (PCM) for the c...
The physis, or growth plate, is a complex disc-shaped cartilage structure that is responsible for lo...
The collagen network and proteoglycan matrix of articular cartilage are thought to play an important...
Cells of the musculoskeletal system are known to respond tomechanical loading and chondrocytes withi...
Articular cartilage experiences significant mechanical loads during daily activities. Healthy cartil...
Previous experimental studies have determined local strain fields for both healthy and degenerate ca...
Chondrocytes are responsible for the elaboration and maintenance of the extracellular (EC) matrix in...
The function of articular cartilage depends on its structure and composition, sensitively impaired i...
BACKGROUND: Mechanical conditioning has been widely used to attempt to enhance chondrocyte metabolis...
BackgroundMechanical conditioning has been widely used to attempt to enhance chondrocyte metabolism ...
AbstractIntroduction: Chondrocytes in articular cartilage utilize mechanical signals to regulate the...
Chondral lesions provide a potential risk factor for development of osteoarthritis. Despite the vari...
Characterization of the mechanical environment of cells in collagenous biological tissues during dif...
The aim was to assess the role of the composition changes in the pericellular matrix (PCM) for the c...
The physis, or growth plate, is a complex disc-shaped cartilage structure that is responsible for lo...
The collagen network and proteoglycan matrix of articular cartilage are thought to play an important...