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Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig | Leipzig, Sachsen | Germany | 2 months ago
for a Postdoctoral Position in quantitative MRI Microscopy. Our vision is to develop and apply microstructure imaging and in-vivo histology using MRI (Weiskopf et al., Nature Rev. Phys. 2022 ). We
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-resolution 3D electron microscopy and expansion microscopy experiments to map the synaptic connections various model organisms. You will be responsible for tissue preparation, imaging, and data acquisition
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the lab is serial-section electron microscopy-based 3D reconstruction of neural circuits, integrated with behavioral data. This position offers hands-on training across multiple techniques (EM tissue
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interconnects characterise the results (SEM, AFM, XCT, optical microscopy) for geometric accuracy, durability and interfacial strength -validate scalability and sustainability: less material waste, better energy
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of biomaterials and nanoparticles in cancer research. We invite self-motivated scholars with experience in histology, immunohistochemistry and confocal microscopy to submit applications. Scholars with expertise in
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, microbiological, and animal research techniques, including sterile technique, cell culture, bacterial culture, PCR, genotyping, immunostaining, microscopy, protein biochemistry methods, mouse handling, colony
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electron microscopy, flow cytometry, proteomic analysis, physical biochemistry analytical instrumentation, and crystallography. This 10‐month appointment would ideally start August 1, 2027, but start date is
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microscopy, flow cytometry, proteomic analysis, physical biochemistry analytical instrumentation, and crystallography. This 10‐month appointment would ideally start August 1, 2027, but start date is negotiable
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fundamental problem: techniques that offer rich molecular-level information, such as fluorescence microscopy, require chemical labelling and struggle with long-term or non-invasive imaging, while label-free
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, Transmission Electron Microscopy (for their lattice structure and crystalline defects) and transport measurements (both in the normal and superconducting state). Devices will be realized by clean room standard