Lateral inhibition resulting from a double-negative feedback loop underlies the assignment of different fates to cells in many developmental processes. Previous studies have shown that the presence of time delays in models of lateral inhibition can result in significant oscillatory transients before patterned steady states are reached. We study the impact of local feedback loops in a model of lateral inhibition based on the Notch signaling pathway, elucidating the roles of intracellular and intercellular delays in controlling the overall system behavior. The model exhibits both in-phase and out-of-phase oscillatory modes and oscillation death. Interactions between oscillatory modes can generate complex behaviors such as intermittent oscilla...
The Notch pathway is instrumental for cell fate diversification during development. Pioneer studies ...
During pancreas development, Neurog3 positive endocrine progenitors are specified by Delta/Notch (D/...
In many developing tissues, adjacent cells diverge in character so as to create a fine-grained patte...
Multicellular organisms are constituted by different kinds of cells which are arranged in a particul...
ABSTRACT Neuronal production in metazoans is tightly controlled by Delta/Notch-dependent signals reg...
ABSTRACT Neuronal production in metazoans is tightly controlled by Delta/Notch-dependent signals reg...
The Notch signaling pathway controls numerous cell fate decisions during development and adulthood t...
The Notch signaling pathway controls numerous cell fate decisions during development and adulthood t...
The Notch signaling pathway controls numerous cell fate decisions during development and adulthood t...
Abstract The Notch pathway is instrumental for cell fate diversification during development. Pioneer...
The Notch signaling pathway controls numerous cell fate decisions during development and adulthood t...
During embryonic development of the mammalian telencephalon, expressions of the Notch ligand: Delta...
Developmental patterning requires juxtacrine signaling in order to tightly coordinate the fates of n...
The Notch signaling pathway controls numerous cell fate decisions during development and adulthood t...
Developmental patterning requires juxtacrine signaling in order to tightly coordinate the fates of n...
The Notch pathway is instrumental for cell fate diversification during development. Pioneer studies ...
During pancreas development, Neurog3 positive endocrine progenitors are specified by Delta/Notch (D/...
In many developing tissues, adjacent cells diverge in character so as to create a fine-grained patte...
Multicellular organisms are constituted by different kinds of cells which are arranged in a particul...
ABSTRACT Neuronal production in metazoans is tightly controlled by Delta/Notch-dependent signals reg...
ABSTRACT Neuronal production in metazoans is tightly controlled by Delta/Notch-dependent signals reg...
The Notch signaling pathway controls numerous cell fate decisions during development and adulthood t...
The Notch signaling pathway controls numerous cell fate decisions during development and adulthood t...
The Notch signaling pathway controls numerous cell fate decisions during development and adulthood t...
Abstract The Notch pathway is instrumental for cell fate diversification during development. Pioneer...
The Notch signaling pathway controls numerous cell fate decisions during development and adulthood t...
During embryonic development of the mammalian telencephalon, expressions of the Notch ligand: Delta...
Developmental patterning requires juxtacrine signaling in order to tightly coordinate the fates of n...
The Notch signaling pathway controls numerous cell fate decisions during development and adulthood t...
Developmental patterning requires juxtacrine signaling in order to tightly coordinate the fates of n...
The Notch pathway is instrumental for cell fate diversification during development. Pioneer studies ...
During pancreas development, Neurog3 positive endocrine progenitors are specified by Delta/Notch (D/...
In many developing tissues, adjacent cells diverge in character so as to create a fine-grained patte...