AbstractTissue morphogenesis comprises the self-organized creation of various patterns and shapes. Although detailed underlying mechanisms are still elusive in many cases, an increasing amount of experimental data suggests that chemical morphogen and mechanical processes are strongly coupled. Here, we develop and test a minimal model of the axis-defining step (i.e., symmetry breaking) in aggregates of the Hydra polyp. Based on previous findings, we combine osmotically driven shape oscillations with tissue mechanics and morphogen dynamics. We show that the model incorporating a simple feedback loop between morphogen patterning and tissue stretch reproduces a wide range of experimental data. Finally, we compare different hypothetical morphoge...
Background: During embryogenesis, chemical (morphogen) and mechanical patterns develop within tissue...
Modeling of pattern formation in hydra has revealed basic mechanisms that underlie the reproducible ...
Understanding how mechanics complement bio-signaling in defining patterns during morphogenesis is an...
AbstractTissue morphogenesis comprises the self-organized creation of various patterns and shapes. A...
Restricted Access. Articles older than 12 months are open to all at the journal site (alternative lo...
AbstractThe freshwater polyp Hydra can regenerate from tissue fragments or random cell aggregates. W...
<p>(A)-(B) Simulation snapshots showing spontaneous pattern formation based on a simple mechanochemi...
The transition from an isotropic tissue to an anisotropic one is one of the rst steps in the develo...
AbstractThe freshwater polyp Hydra has considerable regeneration capabilities. A small fragment of t...
Hydra is a small freshwater polyp capable of regeneration from small tissue pieces and from aggregat...
The formation of a hollow cellular sphere is often one of the first steps of multicellular embryonic...
We study biological, multicellular symmetry breaking on a hollow cell sphere as it occurs during hyd...
In this work we explored regeneration and homeostatic body patterning of the simple cnidarian Hydra....
Motivated by recent experimental findings, we propose a novel mechanism of embryonic pattern formati...
<div><p>Motivated by recent experimental findings, we propose a novel mechanism of embryonic pattern...
Background: During embryogenesis, chemical (morphogen) and mechanical patterns develop within tissue...
Modeling of pattern formation in hydra has revealed basic mechanisms that underlie the reproducible ...
Understanding how mechanics complement bio-signaling in defining patterns during morphogenesis is an...
AbstractTissue morphogenesis comprises the self-organized creation of various patterns and shapes. A...
Restricted Access. Articles older than 12 months are open to all at the journal site (alternative lo...
AbstractThe freshwater polyp Hydra can regenerate from tissue fragments or random cell aggregates. W...
<p>(A)-(B) Simulation snapshots showing spontaneous pattern formation based on a simple mechanochemi...
The transition from an isotropic tissue to an anisotropic one is one of the rst steps in the develo...
AbstractThe freshwater polyp Hydra has considerable regeneration capabilities. A small fragment of t...
Hydra is a small freshwater polyp capable of regeneration from small tissue pieces and from aggregat...
The formation of a hollow cellular sphere is often one of the first steps of multicellular embryonic...
We study biological, multicellular symmetry breaking on a hollow cell sphere as it occurs during hyd...
In this work we explored regeneration and homeostatic body patterning of the simple cnidarian Hydra....
Motivated by recent experimental findings, we propose a novel mechanism of embryonic pattern formati...
<div><p>Motivated by recent experimental findings, we propose a novel mechanism of embryonic pattern...
Background: During embryogenesis, chemical (morphogen) and mechanical patterns develop within tissue...
Modeling of pattern formation in hydra has revealed basic mechanisms that underlie the reproducible ...
Understanding how mechanics complement bio-signaling in defining patterns during morphogenesis is an...