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Field
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collaborative research projects focused on cellular immunology and host responses to infection. · Develop and optimize advanced mammalian cell culture systems, including complex 2D and 3D cellular models
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candidate will also bring experience in 3D printer customization, software/hardware integration, and CAD modeling skills. Responsibilities Minimum Qualifications Preferences Type Benefited Staff Special
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microswimmers/microrobots that can move and interact autonomously in 3D environments, mimicking the complex dynamics of microorganisms in fluids. Living systems such as bacteria or algae exhibit remarkable
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I supervise a wide range of projects stellar astronomy. They include modelling stars in 1D or 3D, deciphering the origin of the elements (stellar nucleosynthesis), and observing using optical
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models, including 2D and 3D cell models, to assess the activity, biocompatibility and accumulation of nanomaterials; • participating in interdisciplinary research conducted by the project team; • analysing
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Leibniz-Institut für Analytische Wissenschaften – ISAS – e.V. | Dortmund, Nordrhein Westfalen | Germany | 3 months ago
Developing computational framework for 3D shape modeling towards biological insights Developing AI-based representation learning framework for data-driven cell modeling Report findings and methods in
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to developing patient-derived bladder cancer organoid (PDO) models and integrating genomic and transcriptomic profiling to advance personalized medicine in bladder cancer. This lab will serve as a cornerstone for
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cells in structured 2D and 3D environments. Instead of treating artificial/synthetic cells as isolated mimics of life, ProtoEco will develop biohybrid micro-communities that exchange metabolites, energy
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effects, such as 2D/3D propagation and beam speckle patterns, which remain largely unexplored because they require significant simulation capabilities. This thesis aims to conduct a systematic kinetic
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with simulated data and 2D and 3D imaging data of plant tissues (the thale cress Arabidopsis and the aquatic fern Ceratopteris). At a later stage, the models can be extended to three dimensions using