Artwork

Content provided by Center for Mind, Brain, and Culture, Emory College, Emory Center for Mind, and Culture (CMBC). All podcast content including episodes, graphics, and podcast descriptions are uploaded and provided directly by Center for Mind, Brain, and Culture, Emory College, Emory Center for Mind, and Culture (CMBC) or their podcast platform partner. If you believe someone is using your copyrighted work without your permission, you can follow the process outlined here https://player.fm/legal.
Player FM - Podcast App
Go offline with the Player FM app!

Lecture | Arkarup Banerjee | "Neural Circuits for Vocal Communication: Insights from the Singing Mice."

56:21
 
Share
 

Manage episode 401347088 series 2538953
Content provided by Center for Mind, Brain, and Culture, Emory College, Emory Center for Mind, and Culture (CMBC). All podcast content including episodes, graphics, and podcast descriptions are uploaded and provided directly by Center for Mind, Brain, and Culture, Emory College, Emory Center for Mind, and Culture (CMBC) or their podcast platform partner. If you believe someone is using your copyrighted work without your permission, you can follow the process outlined here https://player.fm/legal.

Arkarup Banerjee | School of Biological Science / Cold Spring Harbor Laboratory, NY
"Neural Circuits for Vocal Communication: Insights from the Singing Mice."

My long-standing interest is to understand how circuits of interacting neurons give rise to natural, adaptive behaviors. Using vocal communication behavior across rodent species, my lab at CSHL pursues two complementary questions. How does the auditory system interact with the motor system to generate the fast sensorimotor loop required for vocal communication? What are the neural circuit modifications that allow behavioral novelty to emerge during evolution? In this talk, I will introduce you to the rich vocal life of the Costa-Rican singing mice. Next, I will describe a series of experiments that were performed to demonstrate the role of the motor cortex in controlling vocal flexibility in this species. In closing, I will discuss our ongoing efforts to identify neural circuit differences between singing mice and lab mice using high-throughput connectomics. Together, by combining neural circuit analysis of a natural behavior with comparative evolutionary analyses across species, we stand to gain insight into the function and evolution of neural circuits for social behaviors.

  continue reading

292 episodes

Artwork
iconShare
 
Manage episode 401347088 series 2538953
Content provided by Center for Mind, Brain, and Culture, Emory College, Emory Center for Mind, and Culture (CMBC). All podcast content including episodes, graphics, and podcast descriptions are uploaded and provided directly by Center for Mind, Brain, and Culture, Emory College, Emory Center for Mind, and Culture (CMBC) or their podcast platform partner. If you believe someone is using your copyrighted work without your permission, you can follow the process outlined here https://player.fm/legal.

Arkarup Banerjee | School of Biological Science / Cold Spring Harbor Laboratory, NY
"Neural Circuits for Vocal Communication: Insights from the Singing Mice."

My long-standing interest is to understand how circuits of interacting neurons give rise to natural, adaptive behaviors. Using vocal communication behavior across rodent species, my lab at CSHL pursues two complementary questions. How does the auditory system interact with the motor system to generate the fast sensorimotor loop required for vocal communication? What are the neural circuit modifications that allow behavioral novelty to emerge during evolution? In this talk, I will introduce you to the rich vocal life of the Costa-Rican singing mice. Next, I will describe a series of experiments that were performed to demonstrate the role of the motor cortex in controlling vocal flexibility in this species. In closing, I will discuss our ongoing efforts to identify neural circuit differences between singing mice and lab mice using high-throughput connectomics. Together, by combining neural circuit analysis of a natural behavior with comparative evolutionary analyses across species, we stand to gain insight into the function and evolution of neural circuits for social behaviors.

  continue reading

292 episodes

Tutti gli episodi

×
 
Loading …

Welcome to Player FM!

Player FM is scanning the web for high-quality podcasts for you to enjoy right now. It's the best podcast app and works on Android, iPhone, and the web. Signup to sync subscriptions across devices.

 

Quick Reference Guide