神经科学
有向无环图
皮质(解剖学)
神经网络
人脑
计算机科学
大脑皮层
生物
算法
作者
Yangfan Peng,Antje Bjelde,Pau Vilimelis Aceituno,Franz Xaver Mittermaier,Henrike Planert,Sabine Grosser,Julia Onken,Katharina Faust,Thilo Kalbhenn,Matthias Simon,Helena Radbruch,Pawel Fidzinski,Dietmar Schmitz,Henrik Alle,Martin Holtkamp,Imre Vida,Benjamin F. Grewe,Jörg R. P. Geiger
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2024-04-19
卷期号:384 (6693): 338-343
被引量:3
标识
DOI:10.1126/science.adg8828
摘要
The computational capabilities of neuronal networks are fundamentally constrained by their specific connectivity. Previous studies of cortical connectivity have mostly been carried out in rodents; whether the principles established therein also apply to the evolutionarily expanded human cortex is unclear. We studied network properties within the human temporal cortex using samples obtained from brain surgery. We analyzed multineuron patch-clamp recordings in layer 2-3 pyramidal neurons and identified substantial differences compared with rodents. Reciprocity showed random distribution, synaptic strength was independent from connection probability, and connectivity of the supragranular temporal cortex followed a directed and mostly acyclic graph topology. Application of these principles in neuronal models increased dimensionality of network dynamics, suggesting a critical role for cortical computation.
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