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of chromosomes and specific DNA sequences within the nucleus influences gene expression by visualizing nuclear architecture combining molecular biology, biochemistry, and super-resolution imaging methods
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, including robotic control, mechanics of materials, fluid mechanics and biological systems, in collaboration with other researchers and companies. Your profile Applicants should hold a PhD in Computer
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Post-doctoral Researcher in Multimodal Foundation Models for Brain Cancer & Neuro-degenerative Disea
(perfusion imaging) and response to radiotherapy assessment. These models will explore recent diffusion and auto-regressive generative architectures. They will leverage Mixture of Experts, Chain of Thought and
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device-to-architecture level models of emerging nanoscale devices (spintronic, resistive, or hybrid) for in-memory and neuromorphic computing. Exploring hardware-level security mechanisms based
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networking (SDN), network function virtualization (NFV), and container-based network architectures. The ideal candidate will possess not only a solid theoretical understanding of these technologies but also a
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neurodifferentiation and cancer models. Candidates with strong interest in gene regulation, chromatin architecture, epigenetic mechanisms, and non-coding RNA biology are encouraged to apply. Experience in performing and
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Learning for Biomedical Data. The postholders will focus on developing and applying state-of-the-art generative models (such as VAEs, GANs, and transformer-based architectures) to large-scale biomedical