Computational models of stomatogastric and dopaminergic neurons demonstrate that activity-dependent neuromodulation controllers harmonize with calcium homeostasis via intersections in conductance space to maintain target calcium levels and modulable firing patterns.
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Activity-dependent neuromodulation and calcium homeostasis cooperate to produce robust and modulable neuronal function
Computational models of stomatogastric and dopaminergic neurons demonstrate that activity-dependent neuromodulation controllers harmonize with calcium homeostasis via intersections in conductance space to maintain target calcium levels and modulable firing patterns.