Forces directing germ-band extension in Drosophila embryos

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Frontiers Planar Cell Polarity and E-Cadherin in Tissue-Scale Shape Changes in Drosophila Embryos

Frontiers Virtual spherical-shaped multicellular platform for simulating the morphogenetic processes of spider-like body axis formation

Optogenetic inhibition of actomyosin reveals mechanical bistability of the mesoderm epithelium during Drosophila mesoderm invagination

Forces directing germ-band extension in Drosophila embryos - ScienceDirect

A corset function of exoskeletal ECM promotes body elongation in Drosophila

Signatures of structural disorder in developing epithelial tissues

A contractile actomyosin network linked to adherens junctions by Canoe/afadin helps drive convergent extension

Publications - DFG SPP 1782

PDF] Anterior-posterior patterning in the Drosophila embryo

PDF] Anterior-posterior patterning in the Drosophila embryo

Src42A is required for E-cadherin dynamics at cell junctions during Drosophila axis elongation, Development

A corset function of exoskeletal ECM promotes body elongation in Drosophila

Cellular, molecular, and biophysical control of epithelial cell intercalation. - Abstract - Europe PMC

Extracting multiple surfaces from 3D microscopy images in complex biological tissues with the Zellige software tool, BMC Biology

Radially-patterned cell behaviours during tube budding from an epithelium - preLights

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