Artwork

Contenuto fornito da Max Planck Florida's Neurotransmissions and Max Planck Florida Institute for Neuroscience. Tutti i contenuti dei podcast, inclusi episodi, grafica e descrizioni dei podcast, vengono caricati e forniti direttamente da Max Planck Florida's Neurotransmissions and Max Planck Florida Institute for Neuroscience o dal partner della piattaforma podcast. Se ritieni che qualcuno stia utilizzando la tua opera protetta da copyright senza la tua autorizzazione, puoi seguire la procedura descritta qui https://it.player.fm/legal.
Player FM - App Podcast
Vai offline con l'app Player FM !

57- Behavioral Time Scale Synaptic Plasticity with Dr. Jeff Magee

30:15
 
Condividi
 

Manage episode 259747562 series 1190571
Contenuto fornito da Max Planck Florida's Neurotransmissions and Max Planck Florida Institute for Neuroscience. Tutti i contenuti dei podcast, inclusi episodi, grafica e descrizioni dei podcast, vengono caricati e forniti direttamente da Max Planck Florida's Neurotransmissions and Max Planck Florida Institute for Neuroscience o dal partner della piattaforma podcast. Se ritieni che qualcuno stia utilizzando la tua opera protetta da copyright senza la tua autorizzazione, puoi seguire la procedura descritta qui https://it.player.fm/legal.
Cells that fire together wire together. Hebbian mechanisms of plasticity, summarized by that simple phrase, have dominated the field of learning and memory for decades. However, they present limitations when applied to many behavioral paradigms. On this episode Jeremy, Audrey, and Andre sit down with Dr. Jeff Magee, Howard Hughes Medical Institute Investigator, The Cullen Foundation Distinguished Endowed Chair at the Jan and Dan Duncan Neurological Research Institute, and Professor in the Department of Neuroscience at Baylor College of Medicine. They'll discuss how Dr. Magee's work looking at dendritic processes led him and his group to discover a new plasticity paradigm, in place field learning that breaks from traditional Hebbian rules. Hear also how Dr. Magee keeps active in the lab and his advice for young investigators.
  continue reading

99 episodi

Artwork
iconCondividi
 
Manage episode 259747562 series 1190571
Contenuto fornito da Max Planck Florida's Neurotransmissions and Max Planck Florida Institute for Neuroscience. Tutti i contenuti dei podcast, inclusi episodi, grafica e descrizioni dei podcast, vengono caricati e forniti direttamente da Max Planck Florida's Neurotransmissions and Max Planck Florida Institute for Neuroscience o dal partner della piattaforma podcast. Se ritieni che qualcuno stia utilizzando la tua opera protetta da copyright senza la tua autorizzazione, puoi seguire la procedura descritta qui https://it.player.fm/legal.
Cells that fire together wire together. Hebbian mechanisms of plasticity, summarized by that simple phrase, have dominated the field of learning and memory for decades. However, they present limitations when applied to many behavioral paradigms. On this episode Jeremy, Audrey, and Andre sit down with Dr. Jeff Magee, Howard Hughes Medical Institute Investigator, The Cullen Foundation Distinguished Endowed Chair at the Jan and Dan Duncan Neurological Research Institute, and Professor in the Department of Neuroscience at Baylor College of Medicine. They'll discuss how Dr. Magee's work looking at dendritic processes led him and his group to discover a new plasticity paradigm, in place field learning that breaks from traditional Hebbian rules. Hear also how Dr. Magee keeps active in the lab and his advice for young investigators.
  continue reading

99 episodi

Alle episoder

×
 
Loading …

Benvenuto su Player FM!

Player FM ricerca sul web podcast di alta qualità che tu possa goderti adesso. È la migliore app di podcast e funziona su Android, iPhone e web. Registrati per sincronizzare le iscrizioni su tutti i tuoi dispositivi.

 

Guida rapida