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Eliminating synchronization of coupled neurons adaptively by using feedback coupling with heterogeneous delays. (English) Zbl 1458.92019

Summary: In this paper, we present an adaptive scheme involving heterogeneous delay interactions to suppress synchronization in a large population of oscillators. We analytically investigate the incoherent state stability regions for several specific kinds of distributions for delays. Interestingly, we find that, among the distributions that we discuss, the exponential distribution may offer great convenience to the performance of our adaptive scheme because this distribution renders an unbounded stability region. Moreover, we demonstrate our scheme in the realization of synchronization elimination in some representative, realistic neuronal networks, which makes it possible to deepen the understanding and even refine the existing techniques of deep brain stimulation in the treatment of some synchronization-induced mental disorders.
©2021 American Institute of Physics

MSC:

92C20 Neural biology
92C42 Systems biology, networks
34C15 Nonlinear oscillations and coupled oscillators for ordinary differential equations
34C60 Qualitative investigation and simulation of ordinary differential equation models
34D06 Synchronization of solutions to ordinary differential equations
34D20 Stability of solutions to ordinary differential equations
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