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University of Arizona

Seminars and recordings

October 2026

A cortico-hippocampal network for reference frame coordination and dysfunction in Alzheimer’s disease

Aaron Wilber· Florida State University

Ended

Tue, Oct 6 · 23:00 UTC · Online

Navigation and memory require coordination between map-like allocentric representations and body-centered egocentric actions. Aaron Wilber examines how the parietal–retrosplenial–anterior thalamic–hippocampal network performs these transformations, and how disrupted coordination contributes to spatial deficits in aging and Alzheimer’s disease. Rat sequence-task experiments reveal bidirectional hippocampal–parietal interactions across route-centered, place and egocentric representations. Because that task does not isolate reference-frame use, the laboratory developed a freely available task separating egocentric, allocentric and transformation conditions. Validation indicates that parietal cortex and anterior thalamus are required for transformation; ongoing work examines population states associated with each condition. The talk then connects impaired hippocampal–cortical communication during sleep to navigation deficits in 3xTg-AD mice, reporting recovery of circuit function and cognition after early, circuit-targeted 40 Hz entrainment. Related investigations examine this network during waking navigation. In TgF344-AD rats, egocentric impairments appear before transformation deficits, addressing the shortage of rodent studies of reference-frame coordination in Alzheimer’s disease.

NeuroscienceCognition+2 more

September 2026

Tracking the Spark: PET Imaging of Early Mitochondrial Distress in Neurodegenerative Disease

Meagan McManus· University of Arizona, Center for Innovation in Brain Science and Department of Pharmacology

Ended

Tue, Sep 22 · 23:00 UTC · Online

Meagan McManus examines mitochondrial dysfunction as an early driver of brain ageing and neurodegeneration. Reactive oxygen species and other mitochondrial stress signals connect impaired energy metabolism with glial activation. The talk presents preclinical evidence for [18F]ROStrace PET, a redox-sensitive tracer that crosses the blood–brain barrier, as a non-invasive way to detect mitochondrial and immune distress before overt pathology in models relevant to late-onset Alzheimer’s and Parkinson’s diseases. Online via the University of Arizona Zoom meeting. Use the Zoom link published on the organizer’s event page. Tuesday 22 September 2026, 16:00–17:00 MST (America/Phoenix; UTC−7). Organized by the Graduate Interdisciplinary Program in Neuroscience and the Department of Neuroscience. This listing advertises the verified remote attendance option.

NeuroscienceNeuroimmunology+1 more
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