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About the Opportunity As a Postdoctoral Fellow, the candidate will conduct research on the fundamental theories of signal processing and explore their applications in modern communication systems
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thermal signals with high sensitivity and nanoscale spatial resolution, opening access to biophysical structure and dynamics that are difficult or impossible to reach with conventional techniques
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significant role in addiction-related behaviors by influencing brain function, immune signaling, and metabolite production. This project seeks to uncover the biological mechanisms linking the gut microbiome
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influencing brain function, immune signaling, and metabolite production. This project seeks to uncover the biological mechanisms linking the gut microbiome, host genetics, and addiction vulnerability
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directly from raw signals. The work spans algorithm development, advances in model-based AI, and translation to real-world clinical applications, offering an opportunity to contribute to next-generation
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University. We use animal models of chronic stress to investigate the role of the immune system in psychiatric diseases. Our research investigates how innate immune signaling and inflammation shapes brain
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embedded systems from vulnerabilities rooted in sensor physics, studying the impact of physical signals (e.g., acoustics, lasers, electromagnetic emissions) on AI and sensing systems, and innovating hardware