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Topic: Sensitivity

Seminar
3 seminars
Seminar · Cognition

Bayesian expectation in the perception of the timing of stimulus sequences

Max De Luca · University of Birmingham

Wed, Dec 13, 2023 · 04:00 UTC

In the current virtual journal club Dr Di Luca will present findings from a series of psychophysical investigations where he measured sensitivity and bias in the perception of the timing of stimuli. He will present how improved detection with longer sequences and biases in reporting isochrony can be accounted for by optimal statistical predictions. Among his findings was also that the timing of stimuli that occasionally deviate from a regularly paced sequence is perceptually distorted to appear more regular. Such change depends on whether the context these sequences are presented is also regul

Seminar · Cognition

The contribution of mental face representations to individual face processing abilities

Linda Ficco · Friedrich-Schilller Universität Jena

Tue, Sep 19, 2023 · 13:00 UTC

People largely differ with respect to how well they can learn, memorize, and perceive faces. In this talk, I address two potential sources of variation. One factor might be people’s ability to adapt their perception to the kind of faces they are currently exposed to. For instance, some studies report that those who show larger adaptation effects are also better at performing face learning and memory tasks. Another factor might be people’s sensitivity to perceive fine differences between similar-looking faces. In fact, one study shows that the brain of good performers in a face memory task show

Seminar · Computational Neuroscience

NMC4 Short Talk: An optogenetic theory of stimulation near criticality

Brandon Benson · Stanford University

Wed, Dec 1, 2021 · 13:00 UTC

Recent advances in optogenetics allow for stimulation of neurons with sub-millisecond spike jitter and single neuron selectivity. Already this precision has revealed new levels of cortical sensitivity: stimulating tens of neurons can yield changes in the mean firing rate of thousands of similarly tuned neurons. This extreme sensitivity suggests that cortical dynamics are near criticality. Criticality is often studied in neural systems as a non-equilibrium thermodynamic process in which scale-free patterns of activity, called avalanches, emerge between distinct states of spontaneous activity. W

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