[HTML][HTML] Thalamus and claustrum control parallel layer 1 circuits in retrosplenial cortex

EKW Brennan, I Jedrasiak-Cape, S Kailasa, SP Rice… - Elife, 2021 - elifesciences.org
The granular retrosplenial cortex (RSG) is critical for both spatial and non-spatial behaviors,
but the underlying neural codes remain poorly understood. Here, we use optogenetic circuit …

[HTML][HTML] Thalamus and claustrum control parallel layer 1 circuits in retrosplenial cortex

EKW Brennan, I Jedrasiak-Cape, S Kailasa, SP Rice… - eLife, 2021 - ncbi.nlm.nih.gov
The granular retrosplenial cortex (RSG) is critical for both spatial and non-spatial behaviors,
but the underlying neural codes remain poorly understood. Here, we use optogenetic circuit …

[PDF][PDF] Thalamus and claustrum control parallel layer 1 circuits in retrosplenial cortex

EKW Brennan, I Jedrasiak-Cape, S Kailasa, SP Rice… - scholar.archive.org
The granular retrosplenial cortex (RSG) is critical for both spatial and non-spatial behaviors,
but the underlying neural codes remain poorly understood. Here, we use optogenetic circuit …

Thalamus and claustrum control parallel layer 1 circuits in retrosplenial cortex

EKW Brennan, I Jedrasiak-Cape, S Kailasa, SP Rice… - 2021 - agris.fao.org
The granular retrosplenial cortex (RSG) is critical for both spatial and non-spatial behaviors,
but the underlying neural codes remain poorly understood. Here, we use optogenetic circuit …

Thalamus and claustrum control parallel layer 1 circuits in retrosplenial cortex.

EKW Brennan, I Jedrasiak-Cape, S Kailasa, SP Rice… - eLife, 2021 - search.ebscohost.com
The granular retrosplenial cortex (RSG) is critical for both spatial and non-spatial behaviors,
but the underlying neural codes remain poorly understood. Here, we use optogenetic circuit …

[PDF][PDF] Thalamus and claustrum control parallel layer 1 circuits in retrosplenial cortex

EKW Brennan, I Jedrasiak-Cape, S Kailasa, SP Rice… - researchgate.net
The granular retrosplenial cortex (RSG) is critical for both spatial and non-spatial behaviors,
but the underlying neural codes remain poorly understood. Here, we use optogenetic circuit …

Thalamus and claustrum control parallel layer 1 circuits in retrosplenial cortex.

EK Brennan, I Jedrasiak-Cape, S Kailasa, SP Rice… - Elife, 2021 - europepmc.org
The granular retrosplenial cortex (RSG) is critical for both spatial and non-spatial behaviors,
but the underlying neural codes remain poorly understood. Here, we use optogenetic circuit …

Thalamus and claustrum control parallel layer 1 circuits in retrosplenial cortex

EKW Brennan, I Jedrasiak-Cape, S Kailasa, SP Rice… - bioRxiv, 2020 - biorxiv.org
The granular retrosplenial cortex (RSG) is critical for both spatial navigation and fear
conditioning, but the neural codes enabling these seemingly disparate functions remain …

Thalamus and claustrum control parallel layer 1 circuits in retrosplenial cortex

EK Brennan, I Jedrasiak-Cape, S Kailasa, SP Rice… - …, 2021 - pubmed.ncbi.nlm.nih.gov
The granular retrosplenial cortex (RSG) is critical for both spatial and non-spatial behaviors,
but the underlying neural codes remain poorly understood. Here, we use optogenetic circuit …

[PDF][PDF] Thalamus and claustrum control parallel layer 1 circuits in retrosplenial cortex

EKW Brennan, I Jedrasiak-Cape, S Kailasa, SP Rice… - academia.edu
The granular retrosplenial cortex (RSG) is critical for both spatial and non-spatial behaviors,
but the underlying neural codes remain poorly understood. Here, we use optogenetic circuit …