Cortical depth-dependent human fMRI of resting-state networks using EPIK DOI Creative Commons
Patricia Pais‐Roldán, Seong Dae Yun, Nicola Palomero‐Gallagher

et al.

Frontiers in Neuroscience, Journal Year: 2023, Volume and Issue: 17

Published: May 18, 2023

Recent laminar-fMRI studies have substantially improved understanding of the

Language: Английский

Development and Arealization of the Cerebral Cortex DOI Creative Commons
Cathryn R. Cadwell, Aparna Bhaduri, Mohammed A. Mostajo-Radji

et al.

Neuron, Journal Year: 2019, Volume and Issue: 103(6), P. 980 - 1004

Published: Sept. 1, 2019

Language: Английский

Citations

331

Sensorimotor processing in the rodent barrel cortex DOI
Carl C.H. Petersen

Nature reviews. Neuroscience, Journal Year: 2019, Volume and Issue: 20(9), P. 533 - 546

Published: July 31, 2019

Language: Английский

Citations

235

Circuit organization of the rodent medial prefrontal cortex DOI
Paul G. Anastasiades, Adam G. Carter

Trends in Neurosciences, Journal Year: 2021, Volume and Issue: 44(7), P. 550 - 563

Published: May 7, 2021

Language: Английский

Citations

197

Untangling the cortico-thalamo-cortical loop: cellular pieces of a knotty circuit puzzle DOI
Gordon M. Shepherd, Naoki Yamawaki

Nature reviews. Neuroscience, Journal Year: 2021, Volume and Issue: 22(7), P. 389 - 406

Published: May 6, 2021

Language: Английский

Citations

185

Neuropixels Opto: Combining high-resolution electrophysiology and optogenetics DOI Creative Commons
Anna Lakunina, Karolina Socha, Alexander Ladd

et al.

bioRxiv (Cold Spring Harbor Laboratory), Journal Year: 2025, Volume and Issue: unknown

Published: Feb. 6, 2025

High-resolution extracellular electrophysiology is the gold standard for recording spikes from distributed neural populations, and especially powerful when combined with optogenetics manipulation of specific cell types high temporal resolution. We integrated these approaches into prototype Neuropixels Opto probes, which combine electronic photonic circuits. These devices pack 960 electrical sites two sets 14 light emitters onto a 1 cm shank, allowing spatially addressable optogenetic stimulation blue red light. In mouse cortex, probes delivered high-quality recordings together optogenetics, differentially activating or silencing neurons at distinct cortical depths. striatum other deep structures, efficient optotagging, facilitating identification in parallel. represent an unprecedented tool recording, identifying, manipulating neuronal populations.

Language: Английский

Citations

3

Lateral inhibition in V1 controls neural and perceptual contrast sensitivity DOI

Joseph Del Rosario,

Stefano Coletta, Soon Ho Kim

et al.

Nature Neuroscience, Journal Year: 2025, Volume and Issue: unknown

Published: March 3, 2025

Language: Английский

Citations

2

Simultaneous multiplane imaging with reverberation two-photon microscopy DOI
Devin R. Beaulieu, Ian G. Davison, Kıvılcım Kılıç

et al.

Nature Methods, Journal Year: 2020, Volume and Issue: 17(3), P. 283 - 286

Published: Feb. 10, 2020

Language: Английский

Citations

98

Prefrontal deep projection neurons enable cognitive flexibility via persistent feedback monitoring DOI Creative Commons
Timothy Spellman, Malka Svei, Jesse C. Kaminsky

et al.

Cell, Journal Year: 2021, Volume and Issue: 184(10), P. 2750 - 2766.e17

Published: April 16, 2021

Language: Английский

Citations

86

The human motor cortex microcircuit: insights for neurodegenerative disease DOI
Peter McColgan,

Julie Joubert,

Sarah J. Tabrizi

et al.

Nature reviews. Neuroscience, Journal Year: 2020, Volume and Issue: 21(8), P. 401 - 415

Published: June 18, 2020

Language: Английский

Citations

80

The Synaptic Organization of Layer 6 Circuits Reveals Inhibition as a Major Output of a Neocortical Sublamina DOI Creative Commons

Jaclyn Ellen Frandolig,

Chanel J. Matney,

Kihwan Lee

et al.

Cell Reports, Journal Year: 2019, Volume and Issue: 28(12), P. 3131 - 3143.e5

Published: Sept. 1, 2019

The canonical cortical microcircuit has principally been defined by interlaminar excitatory connections among the six layers of neocortex. However, neurons in layer 6 (L6), a whose functional organization is poorly understood, form relatively rare synaptic with other neurons. Here, we show that vast majority parvalbumin inhibitory sublamina within L6 send axons through toward pia. These receive local inputs from both major types and stronger input thalamocortical afferents than do neighboring pyramidal distribution these interneurons their connectivity further support subdivision standard cortex. Positioned to integrate long-distance this sublayer, generate an output. findings call for revision microcircuit.

Language: Английский

Citations

77