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RETRACTED: A mathematical model explains saturating axon guidance responses to molecular gradients

eLife · 2016 · Vol. 5 · pp. e12248–e12248
Huyen NguyenPeter DayanZac PujicJustin J. Cooper‐WhiteGeoffrey J. Goodhill

Abstract

Correct wiring is crucial for the proper functioning of the nervous system. Molecular gradients provide critical signals to guide growth cones, which are the motile tips of developing axons, to their targets. However, in vitro, growth cones trace highly stochastic trajectories, and exactly how molecular gradients bias their movement is unclear. Here, we introduce a mathematical model based on persistence, bias, and noise to describe this behaviour, constrained directly by measurements of the detailed statistics of growth cone movements in both attractive and repulsive gradients in a microfluidic device. This model provides a mathematical explanation for why average axon turning angles in gradients in vitro saturate very rapidly with time at relatively small values. This work introduces the most accurate predictive model of growth cone trajectories to date, and deepens our understanding of axon guidance events both in vitro and in vivo.

Axon Guidance and Neuronal SignalingCellular Mechanics and InteractionsMicrotubule and mitosis dynamicsGrowth coneAxon guidanceAxonNoise (video)NeurosciencePhysicsBiological systemBiologyStatistical physicsComputer science

MeSH terms

AnimalsAxonsCells, CulturedChemotaxisModels, TheoreticalRats, WistarGrowth ConesLab-On-A-Chip Devices

Funding

  • Gatsby Charitable Foundation
  • National Health and Medical Research Council
Citations
1,244
FWCI
66.88
field-weighted impact
References
79
Percentile
100%
vs. same field & year
Citations per year
References
Autism spectrum disorders: developmental disconnection syndromes
Current Opinion in Neurobiology · 2007 · 1,410 citations
The origins and the future of microfluidics
Nature · 2006 · 9,283 citations
THE CHEMOTACTIC EFFECT OF MIXTURES OF ANTIBODY AND ANTIGEN ON POLYMORPHONUCLEAR LEUCOCYTES
The Journal of Experimental Medicine · 1962 · 2,740 citations
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