Numerous in-vitro studies have established that cells react to their physical environment and to applied mechanical loading. However, the mechanisms underlying such phenomena are poorly understood. Previous modelling of cell compression considered the cell as a passive homogenous material, requiring an artificial increase in the stiffness of spread cells to replicate experimentally measured forces. In this study, we implement a fully 3D active constitutive formulation that predicts the distribution, remodelling, and contractile behaviour of the cytoskeleton. Simulations reveal that polarised and axisymmetric spread cells contain stress fibres which form dominant bundles that are stretched during compression. These dominant fibres exert tens...
In recent years, research in cell biology has shown that mechanics is a key to cell response, differ...
The mechanical micro-environment within a tissue is linked to phenotypic changes of its constituent ...
A bio-chemo-mechanical model is described that targets contractility, adhesion, signaling, and cytos...
Journal articleNumerous in-vitro studies have established that cells react to their physical environ...
The mechanical behavior of the actin cytoskeleton has previously been investigated using both experi...
The mechanical behavior of the actin cytoskeleton has previously been investigated using both experi...
Numerous in-vitro studies have established that cells possess the ability to sense and react to thei...
Micropipette aspiration (MA) has been used extensively in biomechanical investigations of un-adhered...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
The development of a mechanistic understanding of the processes by which cells sense and actively re...
To build anisotropic, mechanically functioning tissue, it is essential to understand how cells orien...
The biomechanisms that govern the response of chondrocytes to mechanical stimuli are poorly understo...
The overall objective of this thesis is to provide a new understanding of the mechanisms that drive ...
The biomechanisms that govern the response of chondrocytes to mechanical stimuli are poorly understo...
In recent years, research in cell biology has shown that mechanics is a key to cell response, differ...
The mechanical micro-environment within a tissue is linked to phenotypic changes of its constituent ...
A bio-chemo-mechanical model is described that targets contractility, adhesion, signaling, and cytos...
Journal articleNumerous in-vitro studies have established that cells react to their physical environ...
The mechanical behavior of the actin cytoskeleton has previously been investigated using both experi...
The mechanical behavior of the actin cytoskeleton has previously been investigated using both experi...
Numerous in-vitro studies have established that cells possess the ability to sense and react to thei...
Micropipette aspiration (MA) has been used extensively in biomechanical investigations of un-adhered...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
The development of a mechanistic understanding of the processes by which cells sense and actively re...
To build anisotropic, mechanically functioning tissue, it is essential to understand how cells orien...
The biomechanisms that govern the response of chondrocytes to mechanical stimuli are poorly understo...
The overall objective of this thesis is to provide a new understanding of the mechanisms that drive ...
The biomechanisms that govern the response of chondrocytes to mechanical stimuli are poorly understo...
In recent years, research in cell biology has shown that mechanics is a key to cell response, differ...
The mechanical micro-environment within a tissue is linked to phenotypic changes of its constituent ...
A bio-chemo-mechanical model is described that targets contractility, adhesion, signaling, and cytos...