Item type |
学術雑誌論文 / Journal Article(1) |
タイトル |
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タイトル |
Recording Methods of Neuronal Cell Activity Using Microelectrodes |
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言語 |
en |
言語 |
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言語 |
eng |
キーワード |
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言語 |
en |
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主題Scheme |
Other |
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主題 |
neuron |
キーワード |
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言語 |
en |
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主題Scheme |
Other |
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主題 |
electrophysiology |
キーワード |
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言語 |
en |
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主題Scheme |
Other |
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主題 |
microelectrode |
キーワード |
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言語 |
en |
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主題Scheme |
Other |
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主題 |
membrane potential |
資源タイプ |
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資源タイプ識別子 |
http://purl.org/coar/resource_type/c_6501 |
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資源タイプ |
journal article |
著者 |
Fukushima, Teruyuki
Nomoto, Kensaku
Kansaku, Kenji
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書誌情報 |
en : Dokkyo Medical Journal
巻 2,
号 3,
p. 183-192,
発行日 2023-09-25
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記事種別 |
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Review Article |
内容記述 |
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内容記述タイプ |
Abstract |
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内容記述 |
Technological advancements in microelectrode recording have contributed to the field of neurophysiology. Herein, we first review the historical background of the invention of microelectrodes. Next, epoch-making neurophysiological studies using microelectrodes, such as resting potentials, action potentials, inhibitory postsynaptic potentials, and single ion channel currents, are presented. In addition, we describe the molecular mechanisms of synapses involved in memory, mapping of the visual cortex, and functions of place and grid cells for spatial navigation, which were revealed using microelectrodes. We further describe recently developed technologies that combine electrophysiology and molecular biology, including those that contributed to identification of receptor proteins for thermal or mechanical stimuli. When combined with molecular biology, electrophysiology using microelectrodes remains useful. |
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言語 |
en |
出版者 |
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出版者 |
Dokkyo Medical Society |
ISSN |
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収録物識別子タイプ |
EISSN |
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収録物識別子 |
2436-522X |
書誌レコードID |
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収録物識別子タイプ |
NCID |
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収録物識別子 |
AA12941861 |
DOI |
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関連タイプ |
isIdenticalTo |
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識別子タイプ |
DOI |
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関連識別子 |
https://doi.org/10.51040/dkmj.2023-001 |
出版タイプ |
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出版タイプ |
VoR |
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出版タイプResource |
http://purl.org/coar/version/c_970fb48d4fbd8a85 |