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Field
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develop expertise in high-resolution cryo-EM, cryo-ET, and the reconstitution of membrane-associated signaling complexes. Data Analysis: Use computational tools (e.g., CryoSPARC, ChimeraX) to analyze and
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on methodological development in cryo-electron microscopy (cryo-EM), particularly in image reconstruction and 3D volumetric analysis of macromolecular structures. Rather than aiming to incrementally optimize existing
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in techniques of developmental biology and expert in mRNA detection using HCR technology. Experience in confocal imaging and 3D analysis of confocal stack is essential. The role is expected
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and testing of a new 3D mapping tool. Duties include conducting laboratory and fieldwork, including underwater fieldwork, centered around the research projects; leading fieldwork; preparing and
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biochemistry. Expertise in e.g. CRISPR-mediated gene editing, protein structure prediction, mass spectrometry-based proteomics, or fluorescence microscopy. Expertise and interest in functional analysis
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on cell cultures (2D/3D), applying interdisciplinary approaches from experimental biology and biophysics Development and optimization of experimental protocols for working with cell cultures, including
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neutrophils, tumor cells, CD8+ T-cells, and cancer-associated fibroblasts, within a biomimetic 3D hydrogel that replicates the tumor microenvironment. Observing neutrophil behaviour: Automated image analysis
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of 3D crystalline structures; – depending on the candidate's profile, implementing machine learning methods (AI & machine learning) for the analysis of physicochemical data from the hpmat.org database
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and techniques in archaeology. The project has aimed to develop a two-part research programme. The first part focuses on developing and applying methods for 3D digital modelling, ranging from
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transport using 3D single molecule fluorescence microscopy and single particle tracking approaches (see Sau et al., 2025 Nature 640:821). Both astigmatism and MINFLUX microscopy will be applied to determine