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嗅球肾小球对频率到空间转换的计算。

Computation of frequency-to-spatial transform by olfactory bulb glomeruli.

作者信息

Antón P S, Lynch G, Granger R

机构信息

Center for the Neurobiology of Learning and Memory, University of California, Irvine 92717.

出版信息

Biol Cybern. 1991;65(5):407-14. doi: 10.1007/BF00216975.

Abstract

A physiological simulation of 2.5% of the input and inhibitory neurons and 25% of the primary mitral/tufted cells in a single mammalian olfactory bulb glomerulus was constructed. This physiological simulation used the integrate-and-fire paradigm with realistic activation curves and synaptic delays. The dendritic integration incorporated non-linear interactive effects of individual cell excitatory and inhibitory post-synaptic potentials (PSPs) from both axodendritic and dendro-dendritic synaptic contacts. Refractory periods for granule-cell inhibition of mitral/tufted cell activity lead to relatively fixed-frequency rhythmic activity in the glomerulus, independent of the input frequency from the olfactory nerve. Though the frequency of mitral/tufted cell firing in bulb was approximately independent of input frequency, the number of cells active in the glomerulus was a roughly-linear function of input frequency to the glomerulus, indicating the mechanism's ability to function as a frequency-to-spatial encoder.

摘要

构建了单个哺乳动物嗅球肾小球中2.5%的输入神经元和抑制性神经元以及25%的初级二尖瓣/簇状细胞的生理模拟。该生理模拟使用了具有实际激活曲线和突触延迟的积分发放范式。树突整合纳入了来自轴突-树突和树突-树突突触接触的单个细胞兴奋性和抑制性突触后电位(PSP)的非线性交互作用。颗粒细胞对二尖瓣/簇状细胞活动的抑制性不应期导致肾小球中相对固定频率的节律性活动,与来自嗅神经的输入频率无关。尽管嗅球中二尖瓣/簇状细胞的放电频率大致与输入频率无关,但肾小球中活跃细胞的数量是肾小球输入频率的大致线性函数,表明该机制具有作为频率到空间编码器的功能。

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