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In vivo analysis of Drosophila embryo developmental dynamics by femtosecond pulse-induced ablation and multimodal nonlinear microscopy

  • Willy Supatto
  • , Delphine Débarre
  • , Bruno Moulia
  • , Eric Brouzés
  • , Jean Louis Martin
  • , Marie Claire Schanne-Klein
  • , Emmanuel Farge
  • , Emmanuel Beaurepaire
  • Institut Curie
  • Ecole Polytechnique
  • INRAE

Research output: Contribution to journalConference articlepeer-review

1 Scopus citations

Abstract

Animal embryo development exhibits a complex ensemble of cell movements that are tightly regulated by developmental gene expression. It was proposed recently that mechanical factors may also play an important role during development. Investigating these dynamical processes is technically challenging and requires novel in vivo investigation methods. We show that multiphoton microscopy can be used for both perturbing and analyzing morphogenetic movements in vivo, (i) nonlinear microscopy is well adapted for the sustained imaging of early Drosophila embryos despite their highly scattering nature; (ii) femtosecond pulse-induced ablation can be used to process specific tissues in vivo. Combining this approach with multimodal microscopy (two-photon-excited fluorescence (2PEF) and third-harmonic generation (THG)), we report the successful quantitative modulation of morphogenetic movements in vivo. Our data provides insight to the issue of morphogenesis regulation.

Original languageEnglish
Article number44
Pages (from-to)256-264
Number of pages9
JournalProgress in Biomedical Optics and Imaging - Proceedings of SPIE
Volume5700
DOIs
StatePublished - 2005
EventMultiphoton Microscopy in the Biomedical Sciences V - San Jose, CA, United States
Duration: Jan 23 2005Jan 25 2005

Keywords

  • Drosophila embryo development
  • Femtosecond pulse-induced ablation
  • In vivo microscopy
  • Morphogenetic movements
  • Third harmonic generation microscopy
  • Two-photon microscopy

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