SummaryHow do neurons develop, control, and maintain their electrical signaling properties in spite of ongoing protein turnover and perturbations to activity? From generic assumptions about the molecular biology underlying channel expression, we derive a simple model and show how it encodes an “activity set point” in single neurons. The model generates diverse self-regulating cell types and relates correlations in conductance expression observed in vivo to underlying channel expression rates. Synaptic as well as intrinsic conductances can be regulated to make a self-assembling central pattern generator network; thus, network-level homeostasis can emerge from cell-autonomous regulation rules. Finally, we demonstrate that the outcome of homeo...
Maintaining the intrinsic excitability of neurons is crucial for stable brain activity. This can be...
A healthy neuron must continually produce millions of proteins and distribute them to function-speci...
AbstractHow do neurons maintain stable intrinsic properties over long periods of time as the channel...
SummaryHow do neurons develop, control, and maintain their electrical signaling properties in spite ...
How do neurons develop, control, and maintain their electrical signaling properties in spite of ongo...
How do neurons develop, control, and maintain their electrical signaling properties in spite of ongo...
Experimental observations reveal that the expression levels of different ion channels vary dramatica...
Most neurons express a wide variety of ion channels with diverse properties, providing a rich toolbo...
A neuron’s identity and function are dictated by its electrophysiological signature. The firing patt...
SummaryNeurons generate cell-specific outputs via interactions of conductances carried by ion channe...
How do neurons and networks achieve their characteristic electrical activity, regulate this activity...
Firing rate homeostasis (FRH) stabilizes neural activity. A pervasive and intuitive theory argues th...
The paper studies homeostatic ion channel trafficking in neurons. We derive a nonlinear closed-loop ...
SummaryA recent study confirms activity-dependent co-regulation of membrane conductances as a mechan...
In many species, excitable cells preserve their physiological properties despite significant variati...
Maintaining the intrinsic excitability of neurons is crucial for stable brain activity. This can be...
A healthy neuron must continually produce millions of proteins and distribute them to function-speci...
AbstractHow do neurons maintain stable intrinsic properties over long periods of time as the channel...
SummaryHow do neurons develop, control, and maintain their electrical signaling properties in spite ...
How do neurons develop, control, and maintain their electrical signaling properties in spite of ongo...
How do neurons develop, control, and maintain their electrical signaling properties in spite of ongo...
Experimental observations reveal that the expression levels of different ion channels vary dramatica...
Most neurons express a wide variety of ion channels with diverse properties, providing a rich toolbo...
A neuron’s identity and function are dictated by its electrophysiological signature. The firing patt...
SummaryNeurons generate cell-specific outputs via interactions of conductances carried by ion channe...
How do neurons and networks achieve their characteristic electrical activity, regulate this activity...
Firing rate homeostasis (FRH) stabilizes neural activity. A pervasive and intuitive theory argues th...
The paper studies homeostatic ion channel trafficking in neurons. We derive a nonlinear closed-loop ...
SummaryA recent study confirms activity-dependent co-regulation of membrane conductances as a mechan...
In many species, excitable cells preserve their physiological properties despite significant variati...
Maintaining the intrinsic excitability of neurons is crucial for stable brain activity. This can be...
A healthy neuron must continually produce millions of proteins and distribute them to function-speci...
AbstractHow do neurons maintain stable intrinsic properties over long periods of time as the channel...