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Symmetry Breaking in Cells and Tissues

Symmetry Breaking in Cells and Tissues

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“Symmetry Breaking in Cells and Tissues” presents a collection of seventeen reviews, opinions and original research papers contributed by theoreticians, physicists and mathematicians, as well as experimental biologists, united by a common interest in biological pattern formation and morphogenesis. The contributors discuss diverse manifestations of symmetry breaking in biology and showcase recent developments in experimental and theoretical approaches to biological morphogenesis and pattern formation on multiple scales.

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Keywords

  • actin dynamics
  • actin polymerization
  • actin waves
  • activator-substrate mechanism
  • activator–inhibitor models
  • actomyosin
  • apoptotic extrusion
  • Bifurcation theory
  • Biology, Life Sciences
  • biphasic responses
  • bottom-up synthetic biology
  • Cdc42
  • Cdc42 oscillations
  • cell fusion
  • cell motility
  • cell polarity
  • cell polarization
  • Cellular Memory
  • Chemotaxis
  • Clustering
  • contractility
  • cortexillin
  • CRY2-CIBN
  • curved proteins
  • cytokinesis
  • cytoplasmic flow
  • Cytoskeleton
  • developmental transitions
  • Dictyostelium
  • Diffusion
  • direction sensing
  • dynamic instability
  • fission yeast
  • fission yeast Schizosaccharomyces pombe
  • GTPase activating protein (GAP)
  • intracellular polarization
  • intracellular waves
  • mass conservation
  • mass-conserved models
  • Mathematical model
  • Mathematics & science
  • membrane and cortical tension
  • modelling
  • modularity
  • motor proteins
  • Myosin
  • n/a
  • natural variation
  • network evolution
  • Neutrality
  • Neutrophils
  • nonlinear waves
  • oncogenic extrusion
  • optogenetics
  • Partial Differential equations
  • pattern formation
  • phase separation
  • phase-space analysis
  • podosomes
  • polarity
  • Polarization
  • positive feedback
  • Prions
  • pseudopod
  • Ras activation
  • Reaction-diffusion
  • reaction–diffusion model
  • Reference, information & interdisciplinary subjects
  • Research & information: general
  • Saccharomyces cerevisiae
  • self-organization
  • sensitivity analysis
  • signal transduction
  • small GTPases
  • spatial localization
  • Stress
  • symmetry breaking
  • symmetry-breaking

Links

DOI: 10.3390/books978-3-0365-0339-4

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