New publication alert!
Working with @ETH_BSSE, we've developed a novel framework combining somatic patch-clamp recordings with high-density microelectrode arrays. This new approach constructs more accurate multicompartment models of neurons.
#Computational#Neuroscience
RT-Sort: an action potential propagation-based algorithm for real time spike detection and sorting with millisecond latencies https://t.co/vF9pfWMu2e #biorxiv_neursci
Studying the mechanosensitivity of neurons at nano-scale | In a study @NatureNano, researchers from the Biophysics group @MullerForce and @bel_ethz reveal how neurons sense the magnitude and temporal features of physical forces > https://t.co/AkgZ0kXhh2
Excited to share this preprint! We developed an approach to reconstruct synaptic input activity during a period of recorded postsynaptic spiking in vitro.
We used it to examine the synaptic basis of self-sustained activity.
#tweeprint at @bel_ethz
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https://t.co/gd6e7wKqse
Using the developed approach, we examine how excitatory and inhibitory synaptic activity relates to postsynaptic spiking. In addition, we characterize the underlying circuit organization - taking a single-neuron perspective. See preprint for details :)
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#tweeprint time! Are you interested in mapping monosynaptic connections in functional neural networks? Then check out our new preprint from @bel_ethz! (1/7)