Skip to content

Crick Neurophys

Seminars and recordings

October 2021

Hard x-ray imaging of biological soft tissues

Carles Bosch, Si Chen, Ana Diaz, Tim Salditt, Yannick Schwab

Ended

Thu, Oct 14 · 11:00 UTC · Online

The aim of this half day virtual meeting is to consider what is currently achievable with existing techniques and to explore where advancements can be made in the short and medium term. Leading scientists in the field will highlight the questions currently being addressed using hard X-ray imaging techniques, volume electron microscopy and their combination with other imaging modalities, with a forward look to areas of opportunity becoming accessible as a result of the recent and upcoming synchrotron upgrades. We expect an exciting day filled with science focused talks and lively discussions on how the field will develop over the next few years.

BiophysicsPhysics of Life+2 more

March 2021

February 2021

November 2020

A novel hypothesis on the role of olfactory bulb granule cells

Veronica Egger· University of Regensburg

Ended

Thu, Nov 26 · 10:00 UTC

The role of granule cells in olfactory processing is surrounded by several enigmatic observations, such as the existence of reciprocal spines and the mechanisms for GABA release from them, the missing evidence for functional reciprocal connectivity, and the apparently low inhibitory drive of granule cells, both with respect to recurrent and lateral inhibition. Here, I summarize recent results with regard to GABA release, leading to a novel hypothesis on granule cell function that has the potential to resolve most of these enigmas. I predict that granule cells provide dynamically switched lateral inhibition between coactive glomerular columns and thus possibly a means of olfactory combinatorial coding.

NeuroePhys+1 more

July 2020

Synaptic, cellular, and circuit mechanisms for learning: insights from electric fish

Nate Sawtell· Columbia University

Ended

Mon, Jul 6 · 14:00 UTC

Understanding learning in neural circuits requires answering a number of difficult questions: (1) What is the computation being performed and what is its behavioral significance? (2) What are the inputs required for the computation and how are they represented at the level of spikes? (3) What are the sites and rules governing plasticity, i.e. how do pre and post-synaptic activity patterns produce persistent changes in synaptic strength? (4) How does network connectivity and dynamics shape the computation being performed? I will discuss joint experimental and theoretical work addressing these questions in the context of the electrosensory lobe (ELL) of weakly electric mormyrid fish.

Comp NeuroNeuro+2 more
End of results.

We use cookies for analytics.