The study of the synchronization patterns of small neuron networks that control several biological processes has become an interesting growing discipline. Some of these synchronization patterns of individual neurons are related to some undesirable neurological diseases, and they are believed to play a crucial role in the emergence of pathological rhythmic brain activity in different diseases, like Parkinson''s disease. We show how, with a suitable combination of short and weak global inhibitory and excitatory stimuli over the whole network, we can switch between different stable bursting patterns in small neuron networks (in our case a 3-neuron network). We develop a systematic study showing and explaining the effects of applying the pulses...
"In this contribution we present the activation of neuronal ensembles of Hindmarsh-Rose neurons by c...
We have built universal central pattern generator (CPG) hardware by interconnecting Hodgkin-Huxley n...
The origin of rhythmic activity in brain circuits and CPG-like motor networks is still not fully und...
Central pattern generators (CPGs) are small neural circuits of coupled cells stably producing a rang...
We demonstrate a motif of three reciprocally inhibitory cells that is able to produce multiple patte...
<div><p>We identify and describe the key qualitative rhythmic states in various 3-cell network motif...
We identify and describe the key qualitative rhythmic states in various 3-cell network motifs of a m...
We compare multistability in central pattern genera-tor (CPG) motifs comprised either of biologicall...
<div><p>Many collective phenomena in Nature emerge from the -partial- synchronisation of the units c...
Many collective phenomena in Nature emerge from the -partial- synchronisation of the units comprisin...
A multifunctional central pattern generator (CPG) can produce bursting polyrhythms that determine lo...
I studied two neuronal networks, one small to investigate the interaction of brain rhythms and one l...
Central pattern generators (CPGs) are localized, autonomous neuronal networks that coordinate the mu...
AbstractCentral pattern generators (CPGs) are localized neuronal networks that have the ability to p...
Cyclic patterns of motor neuron activity are involved in the production of many rhythmic movements, ...
"In this contribution we present the activation of neuronal ensembles of Hindmarsh-Rose neurons by c...
We have built universal central pattern generator (CPG) hardware by interconnecting Hodgkin-Huxley n...
The origin of rhythmic activity in brain circuits and CPG-like motor networks is still not fully und...
Central pattern generators (CPGs) are small neural circuits of coupled cells stably producing a rang...
We demonstrate a motif of three reciprocally inhibitory cells that is able to produce multiple patte...
<div><p>We identify and describe the key qualitative rhythmic states in various 3-cell network motif...
We identify and describe the key qualitative rhythmic states in various 3-cell network motifs of a m...
We compare multistability in central pattern genera-tor (CPG) motifs comprised either of biologicall...
<div><p>Many collective phenomena in Nature emerge from the -partial- synchronisation of the units c...
Many collective phenomena in Nature emerge from the -partial- synchronisation of the units comprisin...
A multifunctional central pattern generator (CPG) can produce bursting polyrhythms that determine lo...
I studied two neuronal networks, one small to investigate the interaction of brain rhythms and one l...
Central pattern generators (CPGs) are localized, autonomous neuronal networks that coordinate the mu...
AbstractCentral pattern generators (CPGs) are localized neuronal networks that have the ability to p...
Cyclic patterns of motor neuron activity are involved in the production of many rhythmic movements, ...
"In this contribution we present the activation of neuronal ensembles of Hindmarsh-Rose neurons by c...
We have built universal central pattern generator (CPG) hardware by interconnecting Hodgkin-Huxley n...
The origin of rhythmic activity in brain circuits and CPG-like motor networks is still not fully und...