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Field
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approach, Timelapse-Patch-Seq (TiPS), combining electrophysiology, 3D imaging and transcriptomics at the level of individual synapses. Main tasks Design and conduct a postdoctoral research project on long
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research environment Preferred Qualifications Experience with organoid systems or advanced 3D culture models Experience with infection biology or immune signaling pathways Experience with in vivo disease
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and α-synuclein pathology. The research combines advanced 3D stem cell modeling, neuroimmune interaction studies, high-content imaging, molecular and biochemical analyses and the evaluation
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, physics, computer science, applied mathematics, or similar Required competences Strong background in image processing and analysis, especially Deformable image registration and 3D segmentation methods
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diagnosis Biomarker attachment, surface chemistry optimisation, and biosensor signal readout analysis In vitro biological evaluation using mammalian cell culture systems, including 2D cultures, 3D spheroids
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-scale, shallow, planar cracks in rocks, faults span a broad range of length scales (10-6-103 km) and surface-to-depth widths (1-102 km) and have a complex 3D architecture (e.g., Giampietro et al., 2025
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morphing-wing UAV prototypes. Methodology: Design and Simulation: ABAQUS, SolidWorks, ANSYS, or COMSOL for topology optimization and aerodynamic modeling. Fabrication: Composite layup, 3D printing (FDM/SLA
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Job Description Are you passionate about data science and X-ray experiments? If so, this position might be perfect for you. We are seeking a data scientist to advance our analysis of complex data
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molecular biology, including primary cell culture and ideally some experience with 3D systems. Familiarity with spatial or transcriptomic approaches and image analysis would be an advantage. We are looking
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solution processable metal oxides (classical and complex), halide perovskites (Pb-free, 2D and 3D) and, more recently, 2D materials and MXenes. We aim at the development of highly stable solar cells