Project

General

Profile

CNSJC - Computationel Neuroscience Journal Club

We usually meet every Wednesday between 1 and 2 pm in 0.101 at the FIAS building to present and discuss papers we are excited about.
These can be brand new or already some years old.

Outline

  • two brief paper presentations per week within 1 hour
  • papers should be related to computational neuroscience
  • presentations should focus on the key insight of the paper
  • every presentation should take at most ~20 min (5-10 slides), followed by
  • ~10min of discussion

Speakers

  • 01.16. | Bettina & Samuel
  • 01.23. | Felix
  • 01.30. | Lukas & Marius
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  • 02.06. | -
  • 02.13. | Bastian
  • 02.20. | -
  • 02.27. | -
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  • 03.06. | -
  • 03.13. | Danylo
  • 03.21. | Marius & Bettina
  • 03.27. | -
    ------------------------------
  • 04.03. | Diyuan & Samuel
  • 04.10. | -
  • 04.17. | Felix & Bettina
  • 04.25. | Samuel & Bastian
    ------------------------------
  • 05.02. | -
  • 05.09. | Sigrid & Diyuan
  • 05.16. | Bettina & Samuel
  • 05.23. | -
  • 05.30. |
    -----------------------------
  • 06.06. | Bastian & Marius
  • 06.12. | -
  • 06.19. | -
  • 06.26. | -
    ------------------------------
  • 07.03. | -
  • 07.10. | -
  • 07.17. | -
  • 07.24. | Bettina & Samuel
  • 07.31. | Sigrid & Bastian
    ------------------------------
  • 08.07. | -
  • 08.14. | -
  • 08.21. | -
  • 08.28. |
    -----------------------------
  • 09.04. | Sigrid & Bastian
  • 09.11. | -
  • 09.18. | -
  • 09.25. |
    -----------------------------

Presented Papers 2019

  • 07.31. | (x &, 20xx) - Bastian
  • 07.31. | (x &, 20xx) - Sigrid
  • 07.24. | (x &, 20xx) - Samuel
  • 07.24. | (x &, 20xx) - Bettina
  • 06.31. | (x &, 20xx) - Samuel
  • 06.31. | (x &, 20xx) - Bettina
  • 06.06. | (x &, 20xx) - Bastian
  • 06.06. | (x &, 20xx) - Marius
  • 05.16. | (Semedo &, 2019) - Cortical Areas Interact through a Communication Subspace
  • 05.16. | (Fletcher & Williams, 2019) - Neocortical Topology Governs the DendriticIntegrative Capacity of Layer 5 Pyramidal Neurons
  • 05.09. | (Amilhon &, 2019) - Parvalbumin interneurons of hippocampus tune population activity at theta frequency
  • 05.09. | (Antón-Bolaños &, 2019) - Prenatal activity from thalamic neurons governs the emergence of functional cortical maps in mice
  • 04.25. | (Stella &, 2019) - Hippocampal Reactivation of Random Trajectories Resembling Brownian Diffusion
  • 04.25. | (Rose &, 2016) - Cell-specific restoration of stimulus preference after monocular deprivation in the visual cortex
  • 04.17. | (Farrell &,2019) - Dynamic compression and expansion in a classifying recurrent network
  • 04.17. | (Humble &, 2019) - Intrinsic spine dynamics are critical for recurrent network learning in models with and without autism spectrum disorder
  • 04.03. | (Arabadzisz &, 2005) - Epileptogenisis and chronic seizures in a mouse model of temporal lobe epilepsy are associated with distinct EEG patterns asks selective neurochemical alterations in the contralateral hippocampus
  • 04.03. | (El-Boustani &, 2018) - Locally coordinated synaptic plasticity of visual cortex neurons in vivo
  • 03.21. | (Chettih & Harvey, 2019) - Single-neuron perturbations reveal feature-specific competition in V1
  • 03.21. | (Rudy &, 2011) - Three groups of interneurons account for nearly 100% of neocortical GABAergic neurons
  • 03.13. | (Liu &, 2018) - Exploring Self-Repair in a Coupled Spiking Astrocyte Neural Network
  • 02.13. | (Huang &, 2019) - Circuit Models of Low-Dimensional Shared Variability in Cortical Networks
  • 01.30. | (Lotter &, 2017) - Deep Predictive Coding Network for Video Prediction and Unsupervised Learning
  • 01.30. | (Guy & Staiger, 2017) - The Functioning of a Cortex without Layers
  • 01.23. | (Attardo &, 2015) - Impermanence of dendritic spines in live adult CA1 hippocampus
  • 01.16. | (Scala &, 2018) - Neocortical layer 4 in adult mouse differs in major cell types and circuit organization between primary sensory areas
  • 01.16. | (Betzel &, 2018) - Stability of spontaneous, correlated activity in mouse auditory cortex

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