Item does not contain fulltextInsufficiency of mechanical properties of tissue-engineered (TE) cartilage grafts is still a limiting factor for their clinical application. It has been shown that mechanostimulation of chondrocytes enhances synthesis of extracellular matrix (ECM) and thereby improves the mechanical properties of the grafts. However, the optimal mechanical loading required to stimulate chondrocytes for sufficient matrix synthesis is still unknown. The properties of the pericellular matrix (PCM) and the ability of the chondrocytes to attach to its adjacent matrix may importantly determine the stimulation of the cell in loaded tissue. The aim of the present study is to numerically investigate the influence of tissue development a...
Item does not contain fulltextMechanical stimulation during cartilage tissue-engineering enhances ex...
BACKGROUND: Mechanical conditioning has been widely used to attempt to enhance chondrocyte metabolis...
The insufficient load-bearing capacity of today's tissue- engineered (TE) cartilage limits its clini...
Insufficiency of mechanical properties of tissue-engineered (TE) cartilage grafts is still a limitin...
Insufficiency of mechanical properties of tissue-engineered (TE) cartilage grafts is still a limitin...
Insufficiency of mechanical properties of tissue-engineered (TE) cartilage grafts is still a limitin...
Insufficiency of mechanical properties of tissue-engineered (TE) cartilage grafts is still a limitin...
Insufficiency of mechanical properties of tissue-engineered (TE) cartilage grafts is still a limitin...
Insufficiency of mechanical properties of tissue-engineered (TE) cartilage grafts is still a limitin...
Mechanical stimulation during cartilage tissue-engineering (TE) enhances extracellular matrix (ECM) ...
Mechanical stimulation during cartilage tissue-engineering (TE) enhances extracellular matrix (ECM) ...
Mechanical stimulation during cartilage tissue-engineering (TE) enhances extracellular matrix (ECM) ...
Mechanical stimulation during cartilage tissue-engineering (TE) enhances extracellular matrix (ECM) ...
Mechanical stimulation during cartilage tissue-engineering (TE) enhances extracellular matrix (ECM) ...
Mechanical stimulation during cartilage tissue-engineering (TE) enhances extracellular matrix (ECM) ...
Item does not contain fulltextMechanical stimulation during cartilage tissue-engineering enhances ex...
BACKGROUND: Mechanical conditioning has been widely used to attempt to enhance chondrocyte metabolis...
The insufficient load-bearing capacity of today's tissue- engineered (TE) cartilage limits its clini...
Insufficiency of mechanical properties of tissue-engineered (TE) cartilage grafts is still a limitin...
Insufficiency of mechanical properties of tissue-engineered (TE) cartilage grafts is still a limitin...
Insufficiency of mechanical properties of tissue-engineered (TE) cartilage grafts is still a limitin...
Insufficiency of mechanical properties of tissue-engineered (TE) cartilage grafts is still a limitin...
Insufficiency of mechanical properties of tissue-engineered (TE) cartilage grafts is still a limitin...
Insufficiency of mechanical properties of tissue-engineered (TE) cartilage grafts is still a limitin...
Mechanical stimulation during cartilage tissue-engineering (TE) enhances extracellular matrix (ECM) ...
Mechanical stimulation during cartilage tissue-engineering (TE) enhances extracellular matrix (ECM) ...
Mechanical stimulation during cartilage tissue-engineering (TE) enhances extracellular matrix (ECM) ...
Mechanical stimulation during cartilage tissue-engineering (TE) enhances extracellular matrix (ECM) ...
Mechanical stimulation during cartilage tissue-engineering (TE) enhances extracellular matrix (ECM) ...
Mechanical stimulation during cartilage tissue-engineering (TE) enhances extracellular matrix (ECM) ...
Item does not contain fulltextMechanical stimulation during cartilage tissue-engineering enhances ex...
BACKGROUND: Mechanical conditioning has been widely used to attempt to enhance chondrocyte metabolis...
The insufficient load-bearing capacity of today's tissue- engineered (TE) cartilage limits its clini...