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for pediatric diseases. Our research focuses on how genetic variants contribute to diseases during early development and on developing mechanism-driven therapeutics. While animal models have advanced our
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development, repair, and disease, with particular attention to controlling tissue architecture and epithelial composition. Candidates should have demonstrated expertise in 3D bioprinting, mammalian cell culture
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University of California, Los Angeles | Los Angeles, California | United States | about 11 hours ago
to fill a full-time Postdoctoral Scholar position. The Postdoctoral Scholar candidate will perform mentored research on the development of an engineered niche comprised of 3D hydrogels to improve current
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development, repair, and disease, with particular attention to controlling tissue architecture and epithelial composition. Candidates should have demonstrated expertise in 3D bioprinting, mammalian cell culture
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. Experience in molecular cloning and working with lentiviral vectors is essential and working with CRISPR editing tools is essential. Experience working with 3D cell line models is preferred. Experience with
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or are occluded. Position Overview As a postdoctoral researcher, you will forge a novel framework for cooperative perception by disrupting today’s most vibrant research threads in AI: Generative Diffusion & 3D/4D
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Max Planck Institute for Plasma Physics (Greifswald), Greifswald | Greifswald, Mecklenburg Vorpommern | Germany | about 2 months ago
of Magnet systems. Your tasks Responsibility for developing computational models of the complex Stellarator 3D magnet system to be used in integrated Stellarator reactor studies. Improvement
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Postdoctoral position: Developing a human lymphoid organ-on-chip to evaluate candidate mRNA vaccines
A post-doctoral position is available to develop a 3D model of a human lymph node and apply this model to preclinical vaccine evaluation. The successful applicant will join the team of Lisa
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for pediatric diseases. Project Description: Our research focuses on how genetic variants contribute to diseases during early development and on developing mechanism-driven therapeutics. While animal models have
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/microglia-based 3D models recapitulating neural-microglia interactions, using biomaterials and (micro)tissue engineering approaches. The innovative aspect of the project will be in developing new analysis