How can we develop simple yet realistic models of the small neural circuits known as central pattern generators (CPGs), which contribute to generate complex multiphase locomotion in living animals? In this paper we introduce a new model (with design criteria) of a generalized half-center oscillator, (pools of) neurons reciprocally coupled by fast/slow inhibitory and excitatory synapses, to produce either alternating bursting or other rhythmic patterns, characterized by different phase lags, depending on the sensory or other external input. We also show how to calibrate its parameters, based on both physiological and functional criteria and on bifurcation analysis. This model accounts for short-term neuromodulation in a biophysically plausib...
Central pattern generators (CPGs) have traditionally been modeled as sets of coupled bistable oscill...
A multifunctional central pattern generator (CPG) can produce bursting polyrhythms that determine lo...
We have used analog VLSI technology to model a class of biological neural circuits known as central ...
In this modelling work, we adopted geometric slow-fast dissection and parameter continuation approac...
We discovered a variety of mechanisms by which a central pattern generator (CPG) can produce multipl...
Central pattern generators (CPGs) are localized, autonomous neuronal networks that coordinate the mu...
We demonstrate a motif of three reciprocally inhibitory cells that is able to produce multiple patte...
We compare multistability in central pattern genera-tor (CPG) motifs comprised either of biologicall...
Networks of neurons, which form central pattern generators (CPGs), are important for controlling ani...
We identify and describe the key qualitative rhythmic states in various 3-cell network motifs of a m...
Central pattern generators (CPGs) are neuronal circuits that control rhythmic movements in animals. ...
We identify and describe the key qualitative rhythmic states in various 3-cell network motifs of a m...
Rhythmic motion in organisms is driven by central pattern generators (CPG). A CPG converts high-leve...
Short-term synaptic plasticity is found in many areas of the central nervous system. In the inhibito...
Numerous animal behaviors, such as locomotion in vertebrates, are produced by rhythmic contractions ...
Central pattern generators (CPGs) have traditionally been modeled as sets of coupled bistable oscill...
A multifunctional central pattern generator (CPG) can produce bursting polyrhythms that determine lo...
We have used analog VLSI technology to model a class of biological neural circuits known as central ...
In this modelling work, we adopted geometric slow-fast dissection and parameter continuation approac...
We discovered a variety of mechanisms by which a central pattern generator (CPG) can produce multipl...
Central pattern generators (CPGs) are localized, autonomous neuronal networks that coordinate the mu...
We demonstrate a motif of three reciprocally inhibitory cells that is able to produce multiple patte...
We compare multistability in central pattern genera-tor (CPG) motifs comprised either of biologicall...
Networks of neurons, which form central pattern generators (CPGs), are important for controlling ani...
We identify and describe the key qualitative rhythmic states in various 3-cell network motifs of a m...
Central pattern generators (CPGs) are neuronal circuits that control rhythmic movements in animals. ...
We identify and describe the key qualitative rhythmic states in various 3-cell network motifs of a m...
Rhythmic motion in organisms is driven by central pattern generators (CPG). A CPG converts high-leve...
Short-term synaptic plasticity is found in many areas of the central nervous system. In the inhibito...
Numerous animal behaviors, such as locomotion in vertebrates, are produced by rhythmic contractions ...
Central pattern generators (CPGs) have traditionally been modeled as sets of coupled bistable oscill...
A multifunctional central pattern generator (CPG) can produce bursting polyrhythms that determine lo...
We have used analog VLSI technology to model a class of biological neural circuits known as central ...