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Firing regulation of fast-spiking interneurons by autaptic inhibition

Firing regulation of fast-spiking interneurons by autaptic inhibition

来源:Arxiv_logoArxiv
英文摘要

Fast-spiking (FS) interneurons in the brain are self-innervated by powerful inhibitory GABAergic autaptic connections. By computational modelling, we investigate how autaptic inhibition regulates the firing response of such interneurons. Our results indicate that autaptic inhibition both boosts the current threshold for action potential generation as well as modulates the input-output gain of FS interneurons. The autaptic transmission delay is identified as a key parameter that controls the firing patterns and determines multistability regions of FS interneurons. Furthermore, we observe that neuronal noise influences the firing regulation of FS interneurons by autaptic inhibition and extends their dynamic range for encoding inputs. Importantly, autaptic inhibition modulates noise-induced irregular firing of FS interneurons, such that coherent firing appears at an optimal autaptic inhibition level. Our result reveal the functional roles of autaptic inhibition in taming the firing dynamics of FS interneurons.

Peng Xu、Shengdun Wu、Yang Xia、Yangsong Zhang、Matjaz Perc、Dezhong Yao、Daqing Guo、Mingming Chen、Chuan Xia

10.1209/0295-5075/114/30001

生物物理学生理学

Peng Xu,Shengdun Wu,Yang Xia,Yangsong Zhang,Matjaz Perc,Dezhong Yao,Daqing Guo,Mingming Chen,Chuan Xia.Firing regulation of fast-spiking interneurons by autaptic inhibition[EB/OL].(2016-06-04)[2025-08-02].https://arxiv.org/abs/1606.01358.点此复制

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