Biological spread cells exist in a perpetually fluctuating state and therefore cannot be described in terms of a unique deterministic system. For modeling approaches to provide novel insight and uncover new mechanisms that drive cell behavior, a framework is required that progresses from traditional deterministic methods (whereby simulation of an experiment predicts a single outcome). In this study, we implement a new, to our knowledge, modeling approach for the analysis of cell spreading on ligand-coated substrates, extending the framework for nonequilibrium thermodynamics of cells developed by Shishvan et al. to include active focal adhesion assembly. We demonstrate that the model correctly predicts the coupled influence of surface collag...
AbstractCell motility is important for many developmental and physiological processes. Motility aris...
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...
Biological spread cells exist in a perpetually fluctuating state and therefore cannot be described i...
In this study we present a steady-state adaptation of the thermodynamically motivated stress fiber (...
The overall objective of this thesis is to provide a new understanding of the mechanisms that drive ...
When plated onto substrates, cell morphology and even stem-cell differentiation are influenced by th...
Adhesion governs to a large extent the mechanical interaction between a cell and its microenvironmen...
<div><p>Adhesion governs to a large extent the mechanical interaction between a cell and its microen...
Adhesion governs to a large extent the mechanical interaction between a cell and its microenvironmen...
The spreading area of cells has been shown to play a central role in the determination of cell fate ...
To verify the validity of thermodynamic approaches to the prediction of cellular behavior, cell spre...
An integrative cell migration model incorporating focal adhesion (FA) dynamics, cytoskeleton and nuc...
Cell interactions with extracellular matrix, such as cell adhesion and spreading, are crucial for ma...
The dynamic interplay between cell adhesion and protrusion is a critical determinant of many forms o...
AbstractCell motility is important for many developmental and physiological processes. Motility aris...
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...
Biological spread cells exist in a perpetually fluctuating state and therefore cannot be described i...
In this study we present a steady-state adaptation of the thermodynamically motivated stress fiber (...
The overall objective of this thesis is to provide a new understanding of the mechanisms that drive ...
When plated onto substrates, cell morphology and even stem-cell differentiation are influenced by th...
Adhesion governs to a large extent the mechanical interaction between a cell and its microenvironmen...
<div><p>Adhesion governs to a large extent the mechanical interaction between a cell and its microen...
Adhesion governs to a large extent the mechanical interaction between a cell and its microenvironmen...
The spreading area of cells has been shown to play a central role in the determination of cell fate ...
To verify the validity of thermodynamic approaches to the prediction of cellular behavior, cell spre...
An integrative cell migration model incorporating focal adhesion (FA) dynamics, cytoskeleton and nuc...
Cell interactions with extracellular matrix, such as cell adhesion and spreading, are crucial for ma...
The dynamic interplay between cell adhesion and protrusion is a critical determinant of many forms o...
AbstractCell motility is important for many developmental and physiological processes. Motility aris...
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...