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Specific dendritic spine modifications and dendritic transport:From in vitro to in vivo
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作者 Albert H.K.Fok Charlotte H.M.Lam Cora S.W.Lai 《Neural Regeneration Research》 2026年第2期665-666,共2页
Dendritic spines are small protrusions along dendrites that contain most of the excitatory synapses in principal neurons,playing a crucial role in neuronal function by creating a compartmentalized environment for sign... Dendritic spines are small protrusions along dendrites that contain most of the excitatory synapses in principal neurons,playing a crucial role in neuronal function by creating a compartmentalized environment for signal transduction.The plasticity of spine morphologies provides a tunable handle to regulate calcium signal dynamics,allowing rapid regulation of protein expression necessary to establish and maintain synapses(Cornejo et al.,2022).If excitatory inputs were to be located primarily on dendritic shafts,dendrites would frequently short-circuit,preventing voltage signals from propagating(Cornejo et al.,2022).It is thus not surprising that the structural plasticity of dendritic spines is closely linked to synaptic plasticity and memory formation(Berry and Nedivi,2017).While comprehensive in vitro studies have been conducted,in vivo studies that directly tackle the mechanism of dendritic transport and translation in regulating spine plasticity spatiotemporally are limited. 展开更多
关键词 excitatory synapses principal neuronsplaying compartmentalized environment establish maintain synapses cornejo dendritic spines regulate calcium signal dynamicsallowing regulation protein expression dendritic shaft
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因式分解法求解非线性电报方程
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作者 郭鹏 唐荣安 孙小伟 《数学的实践与认识》 北大核心 2019年第9期248-252,共5页
应用科尔内霍-佩雷斯和罗苏提出的一种因式分解法获得了非线性电报方程的几类精确解.结果表明,因式分解法是一种简便、直接的方法,并且可用于求解其它非线性数学物理方程.
关键词 科尔内霍-佩雷斯和罗苏方法 因式分解法 非线性电报方程 精确解 孤子
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