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incorporates the mechanisms that underpin the remarkable spatial perception of bats. By leveraging array signal processing to synthesize morphology-induced HRTFs without physical replicas, the project offers a
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the remarkable spatial perception of bats. By leveraging array signal processing to synthesize morphology-induced HRTFs without physical replicas, the project offers a flexible, high-fidelity and scalable approach
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. Project description Growing evidence suggests that allergic immune responses in the gut can influence the brain, but how these signals are transmitted and whether they contribute to brain disorders remains
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. Description This project will investigate how peripheral immune signals shape brain and brain-border immunity and drive neuroinflammation in synucleinopathies and other neurodegenerative diseases. The candidate
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these signals are transmitted and whether they contribute to brain disorders remains unclear. This project will explore how food allergy during early life alters the gut microbiota, reprograms immune cells, and