INTRODUCTION Articular Cartilage (AC) is a thin layer of connective tissue covering bony surfaces of joints [1]. AC allows joints to move smoothly during load transmissions, and plays an essential part in the joints overall health [2]. Chondrocytes maintain AC extracellular matrix, the integrity of which depends largely on compressions applied to the tissue. Past studies used strain control protocols to apply static or short term dynamic compressions to AC and observe changes in chondrocyte morphology [1]. However, there is a lack of studies investigating chondrocyte cell behaviour under long-term cyclic compressions at different frequencies. The purpose of this study was to use three different loading protocols in order to see how chondroc...
SummaryObjectiveChondrocyte stresses and strains in articular cartilage are known to modulate tissue...
In vivo, articular cartilage is under complex mechanical loadings. It is an accepted idea that mecha...
In vivo, during mechanical loading, articular cartilage is exposed to a complex biophysical environm...
INTRODUCTION Articular Cartilage (AC) is a thin layer of connective tissue covering bony surfaces of...
As part of a program of research aimed at determining the role of mechanical forces in connective ti...
SummaryObjectiveWe hypothesize that chondrocytes from distinct zones of articular cartilage respond ...
SummaryObjectiveThe objective of this study was to measure the effects of dynamic compression on sin...
BACKGROUND: Chondrocytes can detect and respond to the mechanical environment by altering their meta...
AbstractObjective: The objective of this study was to characterize the dynamic modulus and compressi...
Chondrocytes are responsible for the elaboration and maintenance of the extracellular (EC) matrix in...
Compressive stimulation can modulate articular chondrocyte functions. Nevertheless, the relevant stu...
SummaryObjectiveThe cell morphology, gene expression, and matrix synthesis of articular chondrocytes...
SummaryObjectiveMechanical stimulation is a widely used method to enhance the formation and properti...
SummaryObjectiveArticular chondrocytes respond to chemical and mechanical signals depending on their...
AbstractThe metabolic activity of chondrocytes in articular cartilage is influenced by alterations i...
SummaryObjectiveChondrocyte stresses and strains in articular cartilage are known to modulate tissue...
In vivo, articular cartilage is under complex mechanical loadings. It is an accepted idea that mecha...
In vivo, during mechanical loading, articular cartilage is exposed to a complex biophysical environm...
INTRODUCTION Articular Cartilage (AC) is a thin layer of connective tissue covering bony surfaces of...
As part of a program of research aimed at determining the role of mechanical forces in connective ti...
SummaryObjectiveWe hypothesize that chondrocytes from distinct zones of articular cartilage respond ...
SummaryObjectiveThe objective of this study was to measure the effects of dynamic compression on sin...
BACKGROUND: Chondrocytes can detect and respond to the mechanical environment by altering their meta...
AbstractObjective: The objective of this study was to characterize the dynamic modulus and compressi...
Chondrocytes are responsible for the elaboration and maintenance of the extracellular (EC) matrix in...
Compressive stimulation can modulate articular chondrocyte functions. Nevertheless, the relevant stu...
SummaryObjectiveThe cell morphology, gene expression, and matrix synthesis of articular chondrocytes...
SummaryObjectiveMechanical stimulation is a widely used method to enhance the formation and properti...
SummaryObjectiveArticular chondrocytes respond to chemical and mechanical signals depending on their...
AbstractThe metabolic activity of chondrocytes in articular cartilage is influenced by alterations i...
SummaryObjectiveChondrocyte stresses and strains in articular cartilage are known to modulate tissue...
In vivo, articular cartilage is under complex mechanical loadings. It is an accepted idea that mecha...
In vivo, during mechanical loading, articular cartilage is exposed to a complex biophysical environm...