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Topic: Comp-neuro

Seminar
2 seminars
Job
2 jobs
Seminar · Neuroscience

Human balance: Delays, sensory dead zones and micro-chaos!

John G. Milton · The University of Texas at Austin

Tue, Oct 6, 2026 · 16:00 UTC

How do humans stabilize an inverted pendulum, and why does a balanced pole eventually fall? Drawing on 25 years of fingertip pole-balancing research, this talk examines neural correction delays: longer poles move more slowly relative to the nervous system’s response time. Delay-differential models can stabilize the upright position, yet skilled people still experience falls. The proposed explanation is microchaos arising from interactions among delay, sensory dead zones and frequency-dependent force encoding. A region of transient falling solutions lies next to stable microchaotic dynamics. Su

Seminar · Neuroscience

Endogenous noise may explain brain state transitions

Axel Hutt · INRIA

Tue, Dec 1, 2026 · 17:00 UTC

The brain adjusts its internal activity to direct visual and auditory attention and regulate responses to external stimuli. Appropriate endogenous activity may support normal cognition and behaviour, while its modulation can also produce dysfunction. Beginning with mathematical models of general anaesthesia, this talk examines how changes in noisy endogenous activity can fragment functional brain organization and account for loss of consciousness. Anaesthesia experiments in ferrets support the theoretical result. Further experimental examples are discussed to show how underlying internal noise

Deadline Oct 11, 2026

Lead research on distributed neural computation and brain evolution using the acoel Hofstenia miamia. The project combines circuit imaging, activity recordings, neural perturbations, behavioural analysis and computational methods to explain how repeated circuit units produce coordinated, adaptive behaviour. This is a full-time, four-year appointment in London, starting from £47,500 annually with benefits. The institute states that this role is eligible for UK visa sponsorship. Applications close on 11 October 2026 at 23:59, according to the current employer advert.

Investigate how mice learn and generalize between virtual and real environments in the Optophysiology Lab at IMBIT. The project combines behavioural experiments, neural recordings and quantitative analysis with development and in-vivo validation of a two-photon miniscope. The researcher will contribute to device design, model behavioural and neural data, and help interpret and publish findings. The 65% appointment is funded for three years, with a possible extension; the advertised initial term ends on 30 November 2029. Pay follows E13 TV-L. Applications close on 31 October 2026.

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