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Heterogeneity of neuronal properties determines the collective behavior of the neurons in the suprachiasmatic nucleus

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Publication:2091883
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DOI10.3934/mbe.2019092zbMath1503.92015OpenAlexW2920992392WikidataQ64330546 ScholiaQ64330546MaRDI QIDQ2091883

Changgui Gu, Tongfeng Weng, Ping Wang, Jos Rohling, Hui-Jie Yang

Publication date: 2 November 2022

Published in: Mathematical Biosciences and Engineering (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.3934/mbe.2019092

zbMATH Keywords

neuronal networkcoupled oscillatorssynchronizationcircadian rhythmsentrainment rangefree running period


Mathematics Subject Classification ID

Neural networks for/in biological studies, artificial life and related topics (92B20) Nonlinear oscillations and coupled oscillators for ordinary differential equations (34C15) Research exposition (monographs, survey articles) pertaining to biology (92-02) Biological rhythms and synchronization (92B25)




Cites Work

  • A multicellular model for differential regulation of circadian signals in the core and shell regions of the suprachiasmatic nucleus
  • Differences in intrinsic amplitudes of neuronal oscillators improve synchronization in the suprachiasmatic nucleus
  • The geometry of biological time.
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