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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
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and analysing geochemistry data on regional- to global-scales. The platform enables users to interrogate geochemistry, geochronology and thermochronology data in 4D (3D through time), making EarthBank
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-Titan instruments, a dual beam FIB, an environmental SEM,... EMAT is also a pioneer in in situ 3D ED studies, as will be important in this project. More about us at our webpage . Position This postdoc
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characterization of 3D structures using microscopic and tomographic techniques. You will also work with architects, designers, and engineers to develop biomimetic models of fiber-reinforced structures in order to
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Hospital, an inclusive centre of excellence working to advance lung health. The postholder will also be required to work closely with KCL team members in the Parsons Group, for expertise in 3D culture models
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characterization techniques with mechanical behavior and finite element methods. The postdoctoral candidate will develop the processes needed to connect mechanical testing data with 3D microstructure of nuclear
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ability to work independently Preferred Qualifications Experience with translational profiling, splicing analysis, or RNA editing Background in pluripotency, 3D embryo models, hematopoietic or cancer model
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assess their responses by cellular and molecular biology techniques;Establish and characterise human iPSC-derived cell models, including 3D cultures and organoids for musculoskeletal disease research