PD-闭环小组/计算神经科学/A quantitative description of membrane current and its application to conduction and excitation in nerve:修订间差异

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{{文章推荐|Reason=Hodgkin-Huxley Model原著,计算神经科学的奠基性工作,领域内近现代工作的基石。通过严谨的数学推理,验证了通过数学方式描述神经元电信号活动的可能性,给出了计算神经科学方法的基本范式。|Journal=The Journal of Physiology|PubYear=1952|DOI=10.1113/jphysiol.1952.sp004764|Category_=研究性工作|Domain=计算神经科学|RecomBy=樊钰|RecomGrp=PD-闭环小组|ReviewBy=於慧龄|Abstract=This article concludes a series of papers concerned with the flow of electric current through the surface membrane of a giant nerve fibre (Hodgkin, Huxley & Katz, 1952; Hodgkin & Huxley, 1952 a-c). Its general object is to discuss the results of the preceding papers (Part I), to put them into mathematical form (Part II) and to show that they will account for conduction and excitation in quantitative terms (Part III).|DetaialsDM=神经元电信号|Cite=10}}
{{文章推荐|Reason=Hodgkin-Huxley Model原著,计算神经科学的奠基性工作,领域内近现代工作的基石。通过严谨的数学推理,验证了通过数学方式描述神经元电信号活动的可能性,给出了计算神经科学方法的基本范式。|Journal=The Journal of Physiology|PubYear=1952|DOI=10.1113/jphysiol.1952.sp004764|Category_=研究性工作|Domain=计算神经科学|RecomBy=樊钰|RecomGrp=PD-闭环小组|ReviewBy=於慧龄|Abstract=This article concludes a series of papers concerned with the flow of electric current through the surface membrane of a giant nerve fibre (Hodgkin, Huxley & Katz, 1952; Hodgkin & Huxley, 1952 a-c). Its general object is to discuss the results of the preceding papers (Part I), to put them into mathematical form (Part II) and to show that they will account for conduction and excitation in quantitative terms (Part III).|DetaialsDM=神经元电信号|Citation=10}}

2024年1月18日 (四) 20:55的版本

推荐理由

Hodgkin-Huxley Model原著,计算神经科学的奠基性工作,领域内近现代工作的基石。通过严谨的数学推理,验证了通过数学方式描述神经元电信号活动的可能性,给出了计算神经科学方法的基本范式。

文章简介
期刊 The Journal of Physiology
发表年份 1952
DOI 10.1113/jphysiol.1952.sp004764
类型 研究性工作
领域 计算神经科学
引用量 {{{Citation_}}}
推荐信息
推荐人 樊钰
审核 於慧龄
推荐小组 PD-闭环小组

摘要

This article concludes a series of papers concerned with the flow of electric current through the surface membrane of a giant nerve fibre (Hodgkin, Huxley & Katz, 1952; Hodgkin & Huxley, 1952 a-c). Its general object is to discuss the results of the preceding papers (Part I), to put them into mathematical form (Part II) and to show that they will account for conduction and excitation in quantitative terms (Part III).

细分领域

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