Biexcitability and Bursting Mechanisms in Neural and Genetic Circuits

P. Gifani, J. Gonçalves
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引用次数: 1

Abstract

Abstract This paper compares mechanisms for generating repetitive spikes (bursts) in neural and transcriptional circuits. Neurons generate bursts followed by refractory periods controlled by ion channels in the membrane. In contrast, in gene transcription the bursts occur during a short time period followed by silent periods regulated by sis-regulatory elements. The role of excitability in producing different patterns of bursts is discussed by comparing the topology of a neural model with natural and synthetic transcriptional genetic circuits. In particular, a special bi-excitable architecture which embeds two excitable states are compared in these systems.
神经和遗传回路的双兴奋性和爆发机制
摘要:本文比较了神经和转录回路中产生重复尖峰(脉冲)的机制。神经元产生脉冲,随后是不应期,由膜上的离子通道控制。相反,在基因转录中,爆发发生在短时间内,随后是由姐妹调节元件调节的沉默期。通过比较自然和合成转录遗传回路的神经模型拓扑结构,讨论了兴奋性在产生不同模式的脉冲中的作用。特别地,在这些系统中比较了嵌入两个激发态的一种特殊的双可激结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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