灵长类动物皮层中普遍imToken下载存在的局部场电位功率的
来源:网络整理 2024-01-20
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Lee, Alex James, Patrick D.。
Johnston,隶属于施普林格自然出版集团,目前尚不清楚皮层中是否存在相应的神经元活动模式的层流基序,第5/6层-功率峰值从浅到深的梯度增加,相关论文于2024年1月18日发表于国际顶尖学术期刊《自然神经科学》杂志上, Desimone,哺乳动物的大脑皮层在解剖学上被组织成六层基序, 附:英文原文 Title: A ubiquitous spectrolaminar motif of local field potential power across the primate cortex Author: Mendoza-Halliday, we recorded LFPs from 14 cortical areas across the cortical hierarchy in five macaque monkeys. The laminar locations of recordings were histologically identified by electrolytic lesions. Across all areas。
we found a ubiquitous spectrolaminar pattern characterized by an increasing deep-to-superficial layer gradient of high-frequency power peaking in layers 2/3 and an increasing superficial-to-deep gradient of alpha-beta power peaking in layers 5/6. Laminar recordings from additional species showed that the spectrolaminar pattern is highly preserved among primatesmacaque, Meng,在所有区域中。
记录的层状位置在组织学上通过电解病变确定。
Westerberg,最新IF:28.771 官方网址: https://www.nature.com/neuro/ 投稿链接: https://mts-nn.nature.com/cgi-bin/main.plex , Xiong。
Bastos, Blake,创刊于1998年, Jacob A.。
Andr M. IssueVolume: 2024-01-18 Abstract: The mammalian cerebral cortex is anatomically organized into a six-layer motif. It is currently unknown whether a corresponding laminar motif of neuronal activity patterns exists across the cortex. Here we report such a motif in the power of local field potentials (LFPs). Using laminar probes。
Kevin D., Jia,imToken钱包下载, Carlson,他们的结果表明存在一种基于层和基于频率的皮质计算机制,他们发现了一个普遍存在的谱层流基序, marmoset and humanbut more dissimilar in mouse. Our results suggest the existence of a canonical layer-based and frequency-based mechanism for cortical computation. DOI: 10.1038/s41593-023-01554-7 Source: https://www.nature.com/articles/s41593-023-01554-7 期刊信息 Nature Neuroscience: 《自然神经科学》, Diego, Maier。
Miller, Mitchell, Lichtenfeld,揭示了灵长类动物皮层中普遍存在的局部场电位(LFPs)功率的光谱层次基序, Earl K.,其特征是第2/3层高频功率峰值从深到浅的梯度增加,imToken钱包, Major。
据悉,光谱层流模式在灵长类动物(猕猴、狨猴和人类)中高度保留, Robert, Brock,。
来自其他物种的层流记录表明,利用层流探针。
Yihan (Sophy), Noah。
Alexander,但在小鼠中差异更大, Selvanayagam。
他们记录了5只猕猴的14个皮层区域的LFP, 他们报告了LFP功率中的这样一个基序, Janahan。
本期文章:《自然—神经科学》:Online/在线发表 美国范德比特大学Andr M. Bastos研究组, Everling, Stefan, Xiaoxuan, Maxwell J.。