Background: Multistability of oscillatory and silent regimes is a ubiquitous phenomenon exhibited by excitable systems such as neurons and cardiac cells. Multistability can play functional roles in short-term memory and maintaining posture. It seems to pose an evolutionary advantage for neurons which are part of multifunctional Central Pattern Generators to possess multistability. The mechanisms supporting multistability of bursting regimes are not well understood or classified. Methodology/Principal Findings: Our study is focused on determining the bio-physical mechanisms underlying different types of co-existence of the oscillatory and silent regimes observed in a neuronal model. We develop a low-dimensional model typifying the dynamics o...
Activity types of isolated neurons and their models may be generically classified as hyper- and depo...
In this paper, we focus on the emergence of diverse neuronal oscillations arising in a mixed populat...
The dynamics of individual neurons are crucial for producing functional activity in neuronal network...
Background: Multistability of oscillatory and silent regimes is a ubiquitous phenomenon exhibited by...
BACKGROUND: Multistability of oscillatory and silent regimes is a ubiquitous phenomenon exhibited by...
Multistability of oscillatory and silent regimes is a ubiquitous phenomenon exhibited by excitable s...
Multistability is a fundamental attribute of the dynamics of neuronal systems under normal and patho...
Flexibility in neuronal circuits has its roots in the dynamical richness of their neurons. Depending...
The co-existence of bursting activity and silence is a common property of various neuronal models. W...
The co-existence of bursting activity and silence is a common property of various neuronal models. W...
A multifunctional central pattern generator (CPG) can produce bursting polyrhythms that determine lo...
A multifunctional central pattern generator (CPG) can produce bursting polyrhythms that determine lo...
A multifunctional central pattern generator (CPG) can produce bursting polyrhythms that determine lo...
The coexistence of neuronal activity regimes has been reported under normal and pathological conditi...
Networks of neurons, which form central pattern generators (CPGs), are important for controlling ani...
Activity types of isolated neurons and their models may be generically classified as hyper- and depo...
In this paper, we focus on the emergence of diverse neuronal oscillations arising in a mixed populat...
The dynamics of individual neurons are crucial for producing functional activity in neuronal network...
Background: Multistability of oscillatory and silent regimes is a ubiquitous phenomenon exhibited by...
BACKGROUND: Multistability of oscillatory and silent regimes is a ubiquitous phenomenon exhibited by...
Multistability of oscillatory and silent regimes is a ubiquitous phenomenon exhibited by excitable s...
Multistability is a fundamental attribute of the dynamics of neuronal systems under normal and patho...
Flexibility in neuronal circuits has its roots in the dynamical richness of their neurons. Depending...
The co-existence of bursting activity and silence is a common property of various neuronal models. W...
The co-existence of bursting activity and silence is a common property of various neuronal models. W...
A multifunctional central pattern generator (CPG) can produce bursting polyrhythms that determine lo...
A multifunctional central pattern generator (CPG) can produce bursting polyrhythms that determine lo...
A multifunctional central pattern generator (CPG) can produce bursting polyrhythms that determine lo...
The coexistence of neuronal activity regimes has been reported under normal and pathological conditi...
Networks of neurons, which form central pattern generators (CPGs), are important for controlling ani...
Activity types of isolated neurons and their models may be generically classified as hyper- and depo...
In this paper, we focus on the emergence of diverse neuronal oscillations arising in a mixed populat...
The dynamics of individual neurons are crucial for producing functional activity in neuronal network...