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Field
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function. Additional research areas include the pathomechanisms of endometriosis using 3D and organoid models, as well as the links between reproductive disorders, reproductive aging, and premature vascular
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position focused on the development of 3D LPT techniques for industrial applications. Job description In this Postdoc position, you will focus on the development of large-scale three-dimensional Lagrangian
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. The ideal candidate for the position has a PhD in virology, cell biology, developmental biology, neuroscience or a closely related biomedical field, with a solid practical background in 3D cell culture
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, therapeutic resistance, and tumor–immune interactions. This position offers opportunities to work with cutting-edge cancer models, 3D culture systems, and translational human samples. This position offers
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conformational heterogeneity in cryo-EM images more extensively and finely than classical methods (discrete classifications), and reveals rare conformational states that can be difficult to detect in 3D
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novel methods across evolutionary analysis, mathematical modelling, micro-scale experiments and 3D printing. You will have a PhD (or close to completion) in biophysics, bioengineering, mathematical
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postdoctoral researcher to develop and deploy coupled X-ray computed laminography and X-ray diffraction methods for non-destructive 3D analysis of solid-state battery pouch cells. The role is embedded within
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Science. Explore new possibilities in the study of 2D and 3D magnetic microstructures using a mix of static and dynamic magnetometric methods, as well as advanced static and dynamic magneto-optical domain
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-assisted organoid sorting, and volumetric 3D bioprinting. The successful candidate will take a leading role in developing and applying human liver organoid systems to study cellular interactions that drive
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, you will work with advanced 3D in vitro models of fibrosis and metabolic disease, using multiple primary and immortalized human cell lines. Your research will focus on identifying molecular mechanisms