A mathematical model is presented of competition between axons for a trophic substance, such as is believed to occur particularly during development. The model is biologically realistic. The growth-stimulating activity of the trophic molecules is assumed to result from their binding to high-affinity receptors on neurons and their axons, but the model also incorporates uptake by nonneuronal cells possessing only lower affinity receptors. Plausible and fairly general assumptions are made concerning the kinetics of binding and internalization and the effects on axonal growth. The model takes into account the possibility that trophic factor production may be regulated by the afferent axons or autoregulated. The variables specified are the "axon...
The formation of neural connections in the mammalian nervous system is a complex process. During dev...
International audienceThe confined and crowded environment of developing brains imposes spatial cons...
The confined and crowded environment of developing brains imposes spatial constraints on neuronal ce...
A mathematical model is presented of competition between axons for a trophic substance, such as is b...
A model is presented of competition between sensory axons for trophic molecules (e.g. a neurotrophin...
A model is presented of competition between sensory axons for trophic molecules (e.g. a neurotrophin...
A model is presented of competition between sensory axons for trophic molecules (e.g. a neurotrophin...
International audienceNeurite extension is essential to establish complex neuronal circuits during b...
International audienceNeurite extension is essential to establish complex neuronal circuits during b...
International audienceNeurite extension is essential to establish complex neuronal circuits during b...
International audienceNeurite extension is essential to establish complex neuronal circuits during b...
<p>The behaviors described in Fig. 1<i>B</i> are implemented through different model equations. Axo...
The development of the nervous system involves in many cases interactions on a local scale rather th...
International audienceThe confined and crowded environment of developing brains imposes spatial cons...
International audienceThe confined and crowded environment of developing brains imposes spatial cons...
The formation of neural connections in the mammalian nervous system is a complex process. During dev...
International audienceThe confined and crowded environment of developing brains imposes spatial cons...
The confined and crowded environment of developing brains imposes spatial constraints on neuronal ce...
A mathematical model is presented of competition between axons for a trophic substance, such as is b...
A model is presented of competition between sensory axons for trophic molecules (e.g. a neurotrophin...
A model is presented of competition between sensory axons for trophic molecules (e.g. a neurotrophin...
A model is presented of competition between sensory axons for trophic molecules (e.g. a neurotrophin...
International audienceNeurite extension is essential to establish complex neuronal circuits during b...
International audienceNeurite extension is essential to establish complex neuronal circuits during b...
International audienceNeurite extension is essential to establish complex neuronal circuits during b...
International audienceNeurite extension is essential to establish complex neuronal circuits during b...
<p>The behaviors described in Fig. 1<i>B</i> are implemented through different model equations. Axo...
The development of the nervous system involves in many cases interactions on a local scale rather th...
International audienceThe confined and crowded environment of developing brains imposes spatial cons...
International audienceThe confined and crowded environment of developing brains imposes spatial cons...
The formation of neural connections in the mammalian nervous system is a complex process. During dev...
International audienceThe confined and crowded environment of developing brains imposes spatial cons...
The confined and crowded environment of developing brains imposes spatial constraints on neuronal ce...