[HTML][HTML] Early-and late-born parvalbumin basket cell subpopulations exhibiting distinct regulation and roles in learning

F Donato, A Chowdhury, M Lahr, P Caroni - Neuron, 2015 - cell.com
Brain networks can support learning by promoting acquisition of task-relevant information or
by adhering to validated rules, but the mechanisms involved are poorly understood. Upon …

[PDF][PDF] Early-and Late-Born Parvalbumin Basket Cell Subpopulations Exhibiting Distinct Regulation and Roles in Learning

F Donato, A Chowdhury, M Lahr… - Cellular and Network …, 2015 - scholar.archive.org
Brain networks can support learning by promoting acquisition of task-relevant information or
by adhering to validated rules, but the mechanisms involved are poorly understood. Upon …

Early-and late-born parvalbumin basket cell subpopulations exhibiting distinct regulation and roles in learning.

F Donato, A Chowdhury, M Lahr, P Caroni - Neuron, 2015 - sonar.ch
English Brain networks can support learning by promoting acquisition of task-relevant
information or by adhering to validated rules, but the mechanisms involved are poorly …

Early-and late-born parvalbumin basket cell subpopulations exhibiting distinct regulation and roles in learning.

F Donato, A Chowdhury, M Lahr, P Caroni - Neuron, 2015 - folia.unifr.ch
English Brain networks can support learning by promoting acquisition of task-relevant
information or by adhering to validated rules, but the mechanisms involved are poorly …

Early-and late-born parvalbumin basket cell subpopulations exhibiting distinct regulation and roles in learning.

F Donato, A Chowdhury, M Lahr, P Caroni - Neuron, 2015 - europepmc.org
Brain networks can support learning by promoting acquisition of task-relevant information or
by adhering to validated rules, but the mechanisms involved are poorly understood. Upon …

Early-and Late-Born Parvalbumin Basket Cell Subpopulations Exhibiting Distinct Regulation and Roles in Learning

F Donato, A Chowdhury, M Lahr, P Caroni - Neuron, 2015 - infona.pl
Brain networks can support learning by promoting acquisition of task-relevant information or
by adhering to validated rules, but the mechanisms involved are poorly understood. Upon …

[引用][C] Early-and Late-Born Parvalbumin Basket Cell Subpopulations Exhibiting Distinct Regulation and Roles in Learning

F Donato, A Chowdhury, M Lahr, P Caroni - Neuron, 2015 - cir.nii.ac.jp
Early- and Late-Born Parvalbumin Basket Cell Subpopulations Exhibiting Distinct Regulation
and Roles in Learning | CiNii Research CiNii 国立情報学研究所 学術情報ナビゲータ[サイニィ] …

[PDF][PDF] Early-and Late-Born Parvalbumin Basket Cell Subpopulations Exhibiting Distinct Regulation and Roles in Learning

F Donato, A Chowdhury, M Lahr… - Cellular and Network …, 2015 - edoc.unibas.ch
Brain networks can support learning by promoting acquisition of task-relevant information or
by adhering to validated rules, but the mechanisms involved are poorly understood. Upon …

[HTML][HTML] Early-and Late-Born Parvalbumin Basket Cell Subpopulations Exhibiting Distinct Regulation and Roles in Learning

F Donato, A Chowdhury, M Lahr, P Caroni - Neuron, 2015 - Elsevier
Brain networks can support learning by promoting acquisition of task-relevant information or
by adhering to validated rules, but the mechanisms involved are poorly understood. Upon …

[PDF][PDF] Early-and Late-Born Parvalbumin Basket Cell Subpopulations Exhibiting Distinct Regulation and Roles in Learning

F Donato, A Chowdhury, M Lahr… - Cellular and Network …, 2015 - academia.edu
Brain networks can support learning by promoting acquisition of task-relevant information or
by adhering to validated rules, but the mechanisms involved are poorly understood. Upon …