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Mathematical model of the role of RdCVF in the coexistence of rods and cones in a healthy eye

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Publication:517984
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DOI10.1007/s11538-016-0185-xzbMath1361.92024OpenAlexW2495876719WikidataQ38929749 ScholiaQ38929749MaRDI QIDQ517984

Stephen Wirkus, José-Alain Sahel, Erika T. Camacho, Thierry Léveillard

Publication date: 28 March 2017

Published in: Bulletin of Mathematical Biology (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.1007/s11538-016-0185-x

zbMATH Keywords

predator-preyretinitis pigmentosaHolling type III responsephotoreceptor co-existencephotoreceptor degeneration


Mathematics Subject Classification ID

Biochemistry, molecular biology (92C40) Physiology (general) (92C30)


Related Items

Spatially-dependent model for rods and cones in the retina, Optimal control with RdCVFL for degenerating photoreceptors, Mathematical models of retinitis pigmentosa: the oxygen toxicity hypothesis, The role of RdCVFL in a mathematical model of photoreceptor interactions, Mathematical models of retinitis pigmentosa: the trophic factor hypothesis



Cites Work

  • Optimal control in the treatment of retinitis pigmentosa
  • A mathematical model for photoreceptor interactions
  • Tracing the progression of retinitis pigmentosa via photoreceptor interactions
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