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MorphoGraphX: A platform for quantifying morphogenesis in 4D

eLife · 2015 · Vol. 4 · pp. 05864–05864
Pierre Barbier de ReuilleAnne‐Lise Routier‐KierzkowskaDaniel KierzkowskiGeorge W. BasselThierry SchüpbachGerardo TaurielloNamrata BajpaiSoeren StraussAlain WeberAnnamária KissAgata BurianHugo HofhuisAleksandra SapalaMarcin LipowczanMaria B. HeimlicherSarah RobinsonEmmanuelle BayerKonrad BaslerPetros KoumoutsakosAdrienne RoederTinri Aegerter‐WilmsenNaomi NakayamaMiltos TsiantisAngela HayDorota KwiatkowskaIoannis XénariosCris KuhlemeierRichard S. Smith

Abstract

Morphogenesis emerges from complex multiscale interactions between genetic and mechanical processes. To understand these processes, the evolution of cell shape, proliferation and gene expression must be quantified. This quantification is usually performed either in full 3D, which is computationally expensive and technically challenging, or on 2D planar projections, which introduces geometrical artifacts on highly curved organs. Here we present MorphoGraphX ( www.MorphoGraphX.org), a software that bridges this gap by working directly with curved surface images extracted from 3D data. In addition to traditional 3D image analysis, we have developed algorithms to operate on curved surfaces, such as cell segmentation, lineage tracking and fluorescence signal quantification. The software's modular design makes it easy to include existing libraries, or to implement new algorithms. Cell geometries extracted with MorphoGraphX can be exported and used as templates for simulation models, providing a powerful platform to investigate the interactions between shape, genes and growth.

Cell Image Analysis TechniquesCellular Mechanics and InteractionsMicrotubule and mitosis dynamicsModular designMorphogenesisComputer scienceSegmentationSoftwareTemplatePlanarComputer visionArtificial intelligenceTracking (education)

MeSH terms

AlgorithmsAnimalsCassiaDrosophila melanogasterFruitImage Processing, Computer-AssistedMicrotubulesMorphogenesisSoftwareGene ExpressionAnisotropyArabidopsisSolanum lycopersicumMicroscopy, ConfocalImaging, Three-Dimensional

Funding

  • National Science Foundation
  • Human Frontier Science Program
  • University of Birmingham
  • Deutsche Forschungsgemeinschaft
  • Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung
  • Max-Planck-Gesellschaft
  • Narodowe Centrum Nauki
  • SystemsX.ch
  • Directorate for Biological Sciences
  • Biotechnology and Biological Sciences Research Council
  • European Research Council
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