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investigates inflammation in health and disease using cutting-edge exposure systems and advanced 2D and 3D cell models. In parallel, NanoSafety2 focuses on the toxicity assessment of particle emissions from
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animal model. However, small animal model findings are not always transferable to larger mammals or humans. The goal for the post-doc is to investigate how the tendon structure and mechanical function
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: Innovate: Use advanced microfabrication techniques and additive manufacturing to develop state-of-the-art devices Investigate: Interface these devices into plant models to study their responses
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emphasis will be placed on (1) applicants' scientific proficiency in forest sciences, and (2) their ability to develop their own line of research in modelling wood quality, complementing the ongoing research
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the following responsibilities: Designing and performing experiments to study skin regeneration, inflammation, and fibrosis using human tissue samples and preclinical models. Applying advanced molecular and
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in mammals. The Simon lab's primary salamander model is the Iberian newt which has the widest spectrum of regeneration capacity among vertebrates. The lab has established several experimental paradigms
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to fulfill, be sure to check what these are before you apply Assessment criteria and other qualifications This is a career development position primarily focused on research. The position is intended
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human skin and/or preclinical models. The position will include the following: Designing and performing experiments to investigate TRM heterogeneity, differentiation, and functional states in inflammatory
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will join a multidisciplinary research program that combines experimental models, patient-derived materials, and advanced technologies to explore the mechanisms that preserve auditory system homeostasis
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of cybersecurity and AI, i.e., attacks and defenses leveraging AI solutions, or attacks and defenses within AI solutions (e.g., backdooring, model poisoning, membership inference), cybersecurity of generative AI