A linear-encoding model explains the variability of the target morphology in regeneration.
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On Having No Head: Cognition throughout Biological SystemsVertically- and horizontally-transmitted memories - the fading boundaries between regeneration and inheritance in planariaTarget morphology and cell memory: a model of regenerative pattern formationInferring regulatory networks from experimental morphological phenotypes: a computational method reverse-engineers planarian regenerationTop-down models in biology: explanation and control of complex living systems above the molecular levelRe-membering the body: applications of computational neuroscience to the top-down control of regeneration of limbs and other complex organsA dynamic architecture of lifeLimbform: a functional ontology-based database of limb regeneration experiments.Knowing one's place: a free-energy approach to pattern regulationBioelectric memory: modeling resting potential bistability in amphibian embryos and mammalian cellsThe stability of memories during brain remodeling: A perspectiveA conceptual model of morphogenesis and regeneration.Physiological controls of large-scale patterning in planarian regeneration: a molecular and computational perspective on growth and form.Endogenous bioelectrical networks store non-genetic patterning information during development and regeneration.Gap junctional signaling in pattern regulation: Physiological network connectivity instructs growth and form.Gap Junctional Blockade Stochastically Induces Different Species-Specific Head Anatomies in Genetically Wild-Type Girardia dorotocephala Flatworms.Physiological inputs regulate species-specific anatomy during embryogenesis and regeneration.Computational discovery and in vivo validation of hnf4 as a regulatory gene in planarian regeneration.Long-Term, Stochastic Editing of Regenerative Anatomy via Targeting Endogenous Bioelectric Gradients.Bioelectric gene and reaction networks: computational modelling of genetic, biochemical and bioelectrical dynamics in pattern regulation.Multiscale memory and bioelectric error correction in the cytoplasm-cytoskeleton-membrane system.
P2860
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P2860
A linear-encoding model explains the variability of the target morphology in regeneration.
description
article científic
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article scientifique
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articolo scientifico
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artigo científico
@pt
bilimsel makale
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scientific article published on 08 January 2014
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
A linear-encoding model explai ...... et morphology in regeneration.
@en
A linear-encoding model explai ...... et morphology in regeneration.
@nl
type
label
A linear-encoding model explai ...... et morphology in regeneration.
@en
A linear-encoding model explai ...... et morphology in regeneration.
@nl
prefLabel
A linear-encoding model explai ...... et morphology in regeneration.
@en
A linear-encoding model explai ...... et morphology in regeneration.
@nl
P2860
P356
P1476
A linear-encoding model explai ...... et morphology in regeneration.
@en
P2093
George A Bubenik
Mauricio Solano
P2860
P304
P356
10.1098/RSIF.2013.0918
P577
2014-01-08T00:00:00Z