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motility in a dense suspension of soft particles mimicking a collection of biological cells, to characterize trypanosome swimming through elastic networks with different pore sizes and elastic properties
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motivation to drive technology towards the market. Are you passionate about science? Full of ideas and innovative potential to drive change? Do you see yourself working in an international fast-paced, highly
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Max Planck Institute for Multidisciplinary Sciences, Göttingen | Gottingen, Niedersachsen | Germany | 28 days ago
transmembrane cargo proteins and drive the formation of transport carriers within the endosomal network. In this mission, we primarily rely on cryo-ET and subtomogram averaging to visualize molecular machines in
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drive the formation of transport carriers within the endosomal network. In this mission, we primarily rely on cryo-ET and subtomogram averaging to visualize molecular machines in reconstituted form
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predisposition to myeloid neoplasms, yet the mechanisms by which they drive disease remain poorly understood. Increasing evidence suggests that both innate immune signaling and alterations in the bone marrow
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Forschungsinstitut für Nutztierbiologie (FBN) | Dummerstorf, Mecklenburg Vorpommern | Germany | 6 days ago
supported by a modern research infrastructure and international collaboration. Settled on a green, natural campus just a short drive from the vibrant coastal city of Rostock, FBN offers an inspiring setting
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aims to uncover the shared molecular mechanisms that drive infertility and open the way for new diagnostics and therapies. Our recent findings show that infertile individuals share phenotypes associated
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Description Water can move in two interconnected realms: the fast, visible rivers at the surface and the slower, pressure-driven flow within substrates. Today, engineers can model each realm
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damage are responsible for many of the mutations that cause cancer and treatment resistance. But their dynamics, the molecular machinery involved, and their role in disease are still poorly understood
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on the subcellular spatial and temporal dynamics of these interactions, with an effort to resolve how different pharmacological approaches may strategically and uniquely alter them. The position is limited to a period