Tissue geometry is an important influence on the evolution of many biological tissues. The local curvature of an evolving tissue induces tissue crowding or spreading, which leads to differential tissue growth rates, and to changes in cellular tension, which can influence cell behaviour. Here, we investigate how directed cell motion interacts with curvature control in evolving biological tissues. Directed cell motion is involved in the generation of angled tissue growth and anisotropic tissue material properties, such as tissue fibre orientation. We develop a new cell-based mathematical model of tissue growth that includes both curvature control and cell guidance mechanisms to investigate their interplay. The model is based on conservation p...
The biomechanical modeling of growing tissues has recently become an area of intense interest. In pa...
International audienceHow biophysical cues can control tissue morphogenesis is a central question in...
We investigate morphologies of proliferating cellular tissues using a numerical simulation model for...
The growth of several biological tissues is known to be controlled in part by local geometrical feat...
Most biological tissues grow by the synthesis of new material close to the tissue's interface, where...
<div><p>Geometric and mechanical properties of individual cells and interactions among neighboring c...
Recent evidence clearly shows that cells respond to various physical cues in their environments, gui...
Understanding the dynamics of cell population allows insight into the control mechanism of the growt...
The morphogenesis of organs necessarily involves mechanical interactions and changes in mechanical p...
<div><p>The morphogenesis of organs necessarily involves mechanical interactions and changes in mech...
Abstract Growth of developing and regenerative biological tissues of different cell types is usually...
Growth of developing and regenerative biological tissues of different cell types is usually driven b...
The self-organization of cells into complex tissues during growth and regeneration is a combination ...
Spatial tissue patterning during early morphogenesis depends on the coordinated movement and shape c...
In plants and animals, developmental programs transform single-celled zygotes intofully formed and f...
The biomechanical modeling of growing tissues has recently become an area of intense interest. In pa...
International audienceHow biophysical cues can control tissue morphogenesis is a central question in...
We investigate morphologies of proliferating cellular tissues using a numerical simulation model for...
The growth of several biological tissues is known to be controlled in part by local geometrical feat...
Most biological tissues grow by the synthesis of new material close to the tissue's interface, where...
<div><p>Geometric and mechanical properties of individual cells and interactions among neighboring c...
Recent evidence clearly shows that cells respond to various physical cues in their environments, gui...
Understanding the dynamics of cell population allows insight into the control mechanism of the growt...
The morphogenesis of organs necessarily involves mechanical interactions and changes in mechanical p...
<div><p>The morphogenesis of organs necessarily involves mechanical interactions and changes in mech...
Abstract Growth of developing and regenerative biological tissues of different cell types is usually...
Growth of developing and regenerative biological tissues of different cell types is usually driven b...
The self-organization of cells into complex tissues during growth and regeneration is a combination ...
Spatial tissue patterning during early morphogenesis depends on the coordinated movement and shape c...
In plants and animals, developmental programs transform single-celled zygotes intofully formed and f...
The biomechanical modeling of growing tissues has recently become an area of intense interest. In pa...
International audienceHow biophysical cues can control tissue morphogenesis is a central question in...
We investigate morphologies of proliferating cellular tissues using a numerical simulation model for...