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Michael W Reimann

Showing results (11-20 of 25) with videos related to

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Network Neuroscience (Cambridge, Mass.)|March 31, 2025
A connectome manipulation framework for the systematic and reproducible study of structure-function relationships through simulationsChristoph Pokorny, Omar Awile, James B Isbister, et al.
Plos Computational Biology|March 11, 2024
Cortical cell assemblies and their underlying connectivity: An in silico studyAndrás Ecker, Daniela Egas Santander, Sirio Bolaños-Puchet, et al.
Neuron|July 30, 2013
A biophysically detailed model of neocortical local field potentials predicts the critical role of active membrane currentsMichael W Reimann, Costas A Anastassiou, Rodrigo Perin, et al.
Nature Communications|June 16, 2021
In silico voltage-sensitive dye imaging reveals the emergent dynamics of cortical populationsTaylor H Newton, Michael W Reimann, Marwan Abdellah, et al.
Nature Neuroscience|June 6, 2017
Rich cell-type-specific network topology in neocortical microcircuitryEyal Gal, Michael London, Amir Globerson, et al.
Imaging Neuroscience (Cambridge, Mass.)|August 13, 2025
Enhancement of brain atlases with laminar coordinate systems: Flatmaps and barrel column annotationsSirio Bolaños-Puchet, Aleksandra Teska, Juan B Hernando, et al.
Frontiers in Computational Neuroscience|June 30, 2017
Cliques of Neurons Bound into Cavities Provide a Missing Link between Structure and FunctionMichael W Reimann, Max Nolte, Martina Scolamiero, et al.
Iscience|January 23, 2025
Heterogeneous and higher-order cortical connectivity undergirds efficient, robust, and reliable neural codesDaniela Egas Santander, Christoph Pokorny, András Ecker, et al.
Hippocampus|June 11, 2020
Data-driven integration of hippocampal CA1 synaptic physiology in silicoAndrás Ecker, Armando Romani, Sára Sáray, et al.
Elife|July 3, 2025
Assemblies, synapse clustering, and network topology interact with plasticity to explain structure-function relationships of the cortical connectomeAndrás Ecker, Daniela Egas Santander, Marwan Abdellah, et al.
Pageof 3

Showing results (11-20 of 25) with videos related to

Sort By:
Pageof 3
Network Neuroscience (Cambridge, Mass.)|March 31, 2025
A connectome manipulation framework for the systematic and reproducible study of structure-function relationships through simulationsChristoph Pokorny, Omar Awile, James B Isbister, et al.
Plos Computational Biology|March 11, 2024
Cortical cell assemblies and their underlying connectivity: An in silico studyAndrás Ecker, Daniela Egas Santander, Sirio Bolaños-Puchet, et al.
Neuron|July 30, 2013
A biophysically detailed model of neocortical local field potentials predicts the critical role of active membrane currentsMichael W Reimann, Costas A Anastassiou, Rodrigo Perin, et al.
Nature Communications|June 16, 2021
In silico voltage-sensitive dye imaging reveals the emergent dynamics of cortical populationsTaylor H Newton, Michael W Reimann, Marwan Abdellah, et al.
Nature Neuroscience|June 6, 2017
Rich cell-type-specific network topology in neocortical microcircuitryEyal Gal, Michael London, Amir Globerson, et al.
Imaging Neuroscience (Cambridge, Mass.)|August 13, 2025
Enhancement of brain atlases with laminar coordinate systems: Flatmaps and barrel column annotationsSirio Bolaños-Puchet, Aleksandra Teska, Juan B Hernando, et al.
Frontiers in Computational Neuroscience|June 30, 2017
Cliques of Neurons Bound into Cavities Provide a Missing Link between Structure and FunctionMichael W Reimann, Max Nolte, Martina Scolamiero, et al.
Iscience|January 23, 2025
Heterogeneous and higher-order cortical connectivity undergirds efficient, robust, and reliable neural codesDaniela Egas Santander, Christoph Pokorny, András Ecker, et al.
Hippocampus|June 11, 2020
Data-driven integration of hippocampal CA1 synaptic physiology in silicoAndrás Ecker, Armando Romani, Sára Sáray, et al.
Elife|July 3, 2025
Assemblies, synapse clustering, and network topology interact with plasticity to explain structure-function relationships of the cortical connectomeAndrás Ecker, Daniela Egas Santander, Marwan Abdellah, et al.
Pageof 3