دانلود مقاله ISI انگلیسی شماره 152382
ترجمه فارسی عنوان مقاله

افزایش تشدید تصادفی شبکه های عصبی در جهان کوچک توسط سیناپس های هیبرید و تاخیر زمانی

عنوان انگلیسی
Stochastic resonance enhancement of small-world neural networks by hybrid synapses and time delay
کد مقاله سال انتشار تعداد صفحات مقاله انگلیسی
152382 2017 13 صفحه PDF
منبع

Publisher : Elsevier - Science Direct (الزویر - ساینس دایرکت)

Journal : Communications in Nonlinear Science and Numerical Simulation, Volume 42, January 2017, Pages 532-544

ترجمه کلمات کلیدی
رزونانس تصادفی، سیناپس هیبرید، تاخیر زمانی، شبکه کوچک دنیای،
کلمات کلیدی انگلیسی
Stochastic resonance; Hybrid synapses; Time delay; Small-world network;
پیش نمایش مقاله
پیش نمایش مقاله  افزایش تشدید تصادفی شبکه های عصبی در جهان کوچک توسط سیناپس های هیبرید و تاخیر زمانی

چکیده انگلیسی

The synergistic effect of hybrid electrical-chemical synapses and information transmission delay on the stochastic response behavior in small-world neuronal networks is investigated. Numerical results show that, the stochastic response behavior can be regulated by moderate noise intensity to track the rhythm of subthreshold pacemaker, indicating the occurrence of stochastic resonance (SR) in the considered neural system. Inheriting the characteristics of two types of synapses—electrical and chemical ones, neural networks with hybrid electrical-chemical synapses are of great improvement in neuron communication. Particularly, chemical synapses are conducive to increase the network detectability by lowering the resonance noise intensity, while the information is better transmitted through the networks via electrical coupling. Moreover, time delay is able to enhance or destroy the periodic stochastic response behavior intermittently. In the time-delayed small-world neuronal networks, the introduction of electrical synapses can significantly improve the signal detection capability by widening the range of optimal noise intensity for the subthreshold signal, and the efficiency of SR is largely amplified in the case of pure chemical couplings. In addition, the stochastic response behavior is also profoundly influenced by the network topology. Increasing the rewiring probability in pure chemically coupled networks can always enhance the effect of SR, which is slightly influenced by information transmission delay. On the other hand, the capacity of information communication is robust to the network topology within the time-delayed neuronal systems including electrical couplings.