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DTSTART;TZID=America/Los_Angeles:20260407T160000
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DTSTAMP:20260514T084124
CREATED:20251016T203923Z
LAST-MODIFIED:20260403T165516Z
UID:10000099-1775577600-1775581200@nbio.uw.edu
SUMMARY:Lamport Lecture: Kathleen Cullen\, PhD (Johns Hopkins University)
DESCRIPTION:Predictive Neural Computations for Self-Motion\nHow does the brain distinguish self-generated motion from motion imposed by the external world? In this talk\, I will describe how predictive neural computations shape sensory processing during natural self-motion. Using a combination of systems neurophysiology\, computational modeling\, and behavior\, our work focuses on vestibular\, cerebellar\, and thalamocortical circuits operating in closed-loop interactions with the environment. I will show how internal predictions dynamically modulate neural responses\, suppressing predictable self-generated input while preserving sensitivity to unexpected motion. I will conclude by discussing implications for perception\, motor control\, and neuroprosthetic design.  \nDr. Kathleen Cullen\, PhD is a professor of Neuroscience\, Otolaryngology\, and Biomedical Engineering at John Hopkins University. \nhttps://www.bme.jhu.edu/people/faculty/kathleen-cullen/
URL:https://nbio.uw.edu/event/lamport-lecture-kathleen-cullen-johns-hopkins-university/
LOCATION:Foege Genome Sciences Auditorium S-060\, 3720 15th Ave NE\, Seattle\, WA\, 98195\, United States
CATEGORIES:Seminar
ATTACH;FMTTYPE=image/jpeg:https://nbio.uw.edu/wp-content/uploads/2025/10/Cullen-e1772487531266.jpeg
ORGANIZER;CN="UW NBIO":MAILTO:nbio@uw.edu
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