Based on atomic force microscopytechnique, we found that the chondrocytes exhibits stress relaxation behavior. We explored the mechanism of this stress relaxation behavior and concluded that the intracellular fluid exuding out from the cells during deformation plays the most important role in the stress relaxation. We applied the inverse finite element analysis technique to determine necessary material parameters for porohyperelastic (PHE) model to simulate stress relaxation behavior as this model is proven capable of capturing the non-linear behavior and the fluid-solid interaction during the stress relaxation of the single chondrocytes. It is observed that PHE model can precisely capture the stress relaxation behavior of single chondrocyt...
The biomechanisms that govern the response of chondrocytes to mechanical stimuli are poorly understo...
The biomechanisms that govern the response of chondrocytes to mechanical stimuli are poorly understo...
SummaryObjectiveArticular chondrocytes respond to chemical and mechanical signals depending on their...
AbstractBased on atomic force microscopytechnique, we found that the chondrocytes exhibits stress re...
Besides the elastic stiffness, the relaxation behavior of single living cells is also of interest of...
There are many continuum mechanical models have been developed such as liquid drop models, solid mod...
The aim of this paper is to utilize a poroviscohyperelastic (PVHE) model which is developed based on...
Various studies have been conducted to investigate the effects of impact loading on cartilage damage...
Based on the characterization by Atomic Force Microscopy (AFM), we report that the mechanical proper...
The aim of this paper is to determine the strain-rate-dependent mechanical behavior of living and fi...
It has been demonstrated that most cells of the body respond to osmotic pressure in a systematic man...
It has been demonstrated that most cells of the body respond to osmotic pressure in a systematic man...
In this manuscript, we investigated the fundamental mechanism of stress relaxation phenomenon by emp...
It is well-known that cell adhesion is important in many biological processes such as cell migration...
AbstractAtomic force microscopy has rapidly become a valuable tool for quantifying the biophysical p...
The biomechanisms that govern the response of chondrocytes to mechanical stimuli are poorly understo...
The biomechanisms that govern the response of chondrocytes to mechanical stimuli are poorly understo...
SummaryObjectiveArticular chondrocytes respond to chemical and mechanical signals depending on their...
AbstractBased on atomic force microscopytechnique, we found that the chondrocytes exhibits stress re...
Besides the elastic stiffness, the relaxation behavior of single living cells is also of interest of...
There are many continuum mechanical models have been developed such as liquid drop models, solid mod...
The aim of this paper is to utilize a poroviscohyperelastic (PVHE) model which is developed based on...
Various studies have been conducted to investigate the effects of impact loading on cartilage damage...
Based on the characterization by Atomic Force Microscopy (AFM), we report that the mechanical proper...
The aim of this paper is to determine the strain-rate-dependent mechanical behavior of living and fi...
It has been demonstrated that most cells of the body respond to osmotic pressure in a systematic man...
It has been demonstrated that most cells of the body respond to osmotic pressure in a systematic man...
In this manuscript, we investigated the fundamental mechanism of stress relaxation phenomenon by emp...
It is well-known that cell adhesion is important in many biological processes such as cell migration...
AbstractAtomic force microscopy has rapidly become a valuable tool for quantifying the biophysical p...
The biomechanisms that govern the response of chondrocytes to mechanical stimuli are poorly understo...
The biomechanisms that govern the response of chondrocytes to mechanical stimuli are poorly understo...
SummaryObjectiveArticular chondrocytes respond to chemical and mechanical signals depending on their...