Modelling and simulation in mechanobiology play an increasingly important role to unravel the complex mechanisms that allow resident cells to sense and respond to mechanical cues. Many of the in vivo mechanical loads occur on the tissue length scale, thus raising the essential question how the resulting macroscopic strains and stresses are transferred across the scales down to the cellular and subcellular levels. Since cells anchor to the collagen fibres within the extracellular matrix, the reliable representation of fibre deformation is a prerequisite for models that aim at linking tissue biomechanics and cell mechanobiology. In this paper, we consider the two-scale mechanical response of an affine structural model as an example of a conti...
The mechanical interactions between Cells and Extracellular Matrix (ECM) play a central role in vari...
Mechanobiology of cells in soft collagenous tissues is highly affected by both tissue response at...
Skeletal muscle tissue has a highly complex and heterogeneous structure comprising several physical ...
los ingt hurc d fo me addresses scale separation between the macroscopic, tissue-level scale and the...
Soft tissues are one of the human body’s main components. Their constant communication and movements...
Many biological systems involve intricate, hierarchical networks formed from cross-linked filaments,...
The understanding of morphogenesis in living organisms has been renewed by tremendous progress in ex...
Skeletal muscle tissues are highly hierarchical materials with multifarious fibre bundles embedded i...
Mechanics of collagen bio-structures at different scales (nano, micro, and macro) is addressed, aim...
Physical interactions of cells with matrix microenvironments are critical steps in many cellular pro...
The mechanical behaviour of solid biological tissues has long been described using models based on c...
In a diversity of physiological contexts, eukaryotic cells adhere to an extracellular matrix (ECM), ...
Material properties of soft fibrous tissues are highly conditioned by the hierarchical structure of ...
Cells actively probe and respond to the stiffness of their surroundings. Since mechanosensory cells ...
The quantitative study of cell mechanics is of paramount interest, since it regulates the behaviour ...
The mechanical interactions between Cells and Extracellular Matrix (ECM) play a central role in vari...
Mechanobiology of cells in soft collagenous tissues is highly affected by both tissue response at...
Skeletal muscle tissue has a highly complex and heterogeneous structure comprising several physical ...
los ingt hurc d fo me addresses scale separation between the macroscopic, tissue-level scale and the...
Soft tissues are one of the human body’s main components. Their constant communication and movements...
Many biological systems involve intricate, hierarchical networks formed from cross-linked filaments,...
The understanding of morphogenesis in living organisms has been renewed by tremendous progress in ex...
Skeletal muscle tissues are highly hierarchical materials with multifarious fibre bundles embedded i...
Mechanics of collagen bio-structures at different scales (nano, micro, and macro) is addressed, aim...
Physical interactions of cells with matrix microenvironments are critical steps in many cellular pro...
The mechanical behaviour of solid biological tissues has long been described using models based on c...
In a diversity of physiological contexts, eukaryotic cells adhere to an extracellular matrix (ECM), ...
Material properties of soft fibrous tissues are highly conditioned by the hierarchical structure of ...
Cells actively probe and respond to the stiffness of their surroundings. Since mechanosensory cells ...
The quantitative study of cell mechanics is of paramount interest, since it regulates the behaviour ...
The mechanical interactions between Cells and Extracellular Matrix (ECM) play a central role in vari...
Mechanobiology of cells in soft collagenous tissues is highly affected by both tissue response at...
Skeletal muscle tissue has a highly complex and heterogeneous structure comprising several physical ...