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Forces directing germ-band extension in Drosophila embryos

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Forces directing germ-band extension in Drosophila embryos
Optogenetic inhibition of actomyosin reveals mechanical bistability of the  mesoderm epithelium during Drosophila mesoderm invagination

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

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

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

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

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

Optochemical Control of Cell Contractility in Drosophila Embryos

Optochemical Control of Cell Contractility in Drosophila Embryos

Leaders in collective migration: are front cells

Leaders in collective migration: are front cells

Gastrulation Movements in Zebrafish (A) During early zebrafish

Gastrulation Movements in Zebrafish (A) During early zebrafish

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

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

Forces directing germ-band extension in Drosophila embryos - ScienceDirect

Forces directing germ-band extension in Drosophila embryos - ScienceDirect

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

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

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

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

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

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