Understanding the cellular organization of tissues is key to developmental biology. In order to deal with this complex problem, researchers have taken advantage of reductionist approaches to reveal fundamental morphogenetic mechanisms and quantitative laws. For epithelia, their two-dimensional representation as polygonal tessellations has proved successful for understanding tissue organization. Yet, epithelial tissues bend and fold to shape organs in three dimensions. In this context, epithelial cells are too often simplified as prismatic blocks with a limited plasticity. However, there is increasing evidence that a realistic approach, even from a reductionist perspective, must include apico-basal intercalations (i.e. scutoidal cell shapes)...
The cross-section of a cell in a monolayer epithelial tissue can be modeled mathematically as a k-si...
Apico-basal cell intercalations (scutoids) optimize packing and energy expenditure in curved epithel...
Morphogenesis is driven by small cell shape changes that modulate tissue organization. Apical surfac...
Understanding the cellular organization of tissues is key to developmental biology. In order to deal...
Understanding the cellular organization of tissues is key to developmental biology. In order to deal...
Understanding the cellular organization of tissues is key to developmental biology. In order to deal...
Tesis doctoral en el programa de Biología integrada por la Universidad de Sevilla (Facultad de Biolo...
As animals develop, tissue bending contributes to shape the organs into complex three-dimensional st...
As animals develop, tissue bending contributes to shape the organs into complex three-dimensional st...
Resumen del póster presentado al 1st Joint Meeting of the French-Portuguese-Spanish Biochemical and ...
As animals develop, tissue bending contributes to shape the organs into complex three-dimensional st...
Pseudostratified epithelia have smooth apical and basal surfaces, yet along the apical-basal axis, c...
Understanding tissue and organ organization is key to unravel the genesis of pathology. Also, the st...
Organ and tissue formation are complex three-dimensional processes involving cell division, growth, ...
During morphogenesis, epithelial sheets remodel into complex geometries. How cells dynamically organ...
The cross-section of a cell in a monolayer epithelial tissue can be modeled mathematically as a k-si...
Apico-basal cell intercalations (scutoids) optimize packing and energy expenditure in curved epithel...
Morphogenesis is driven by small cell shape changes that modulate tissue organization. Apical surfac...
Understanding the cellular organization of tissues is key to developmental biology. In order to deal...
Understanding the cellular organization of tissues is key to developmental biology. In order to deal...
Understanding the cellular organization of tissues is key to developmental biology. In order to deal...
Tesis doctoral en el programa de Biología integrada por la Universidad de Sevilla (Facultad de Biolo...
As animals develop, tissue bending contributes to shape the organs into complex three-dimensional st...
As animals develop, tissue bending contributes to shape the organs into complex three-dimensional st...
Resumen del póster presentado al 1st Joint Meeting of the French-Portuguese-Spanish Biochemical and ...
As animals develop, tissue bending contributes to shape the organs into complex three-dimensional st...
Pseudostratified epithelia have smooth apical and basal surfaces, yet along the apical-basal axis, c...
Understanding tissue and organ organization is key to unravel the genesis of pathology. Also, the st...
Organ and tissue formation are complex three-dimensional processes involving cell division, growth, ...
During morphogenesis, epithelial sheets remodel into complex geometries. How cells dynamically organ...
The cross-section of a cell in a monolayer epithelial tissue can be modeled mathematically as a k-si...
Apico-basal cell intercalations (scutoids) optimize packing and energy expenditure in curved epithel...
Morphogenesis is driven by small cell shape changes that modulate tissue organization. Apical surfac...