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gerbils and run behavioral experiments to assess the neural mechanisms of sensory-guided decision-making. Carry out post-experiment processing of brain tissue. Assist with microscopy and anatomical analysis
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electrodes using various electron microscopy techniques (e.g. FIB-SEM); (ii) Reconstruction of the 3D structure through image analysis; (iii) Analysis of images from new and aged membrane-electrode assemblies
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and related materials Electron Microscopy or Machine Learning is of advantage. If English is not your first language then you must have an International English Language Testing System (IELTS) average
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Qualifications Experience with rodents (handling, brain surgeries, tissue harvesting) Experience in confocal microscopy and imaging software (Axiovision and Image J) Experience in image analysis techniques
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Identifying the impact of environmental conditions such as temperature and ionic concentration Based on the delocalized electron system, the aromatic molecules and their properties will be analyzed using
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. The electrodes will be characterized by optical microscopy, scanning electron microscopy (SEM), and X-ray microfluorescence spectrometry (UCCS, Artois) to verify their dimensional and structural quality
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laser, synchrotron radiation, and electron microscopy; Super-resolution fluorescence microscopy and its applications. New in-situ and operando characterization method development for synchrotron radiation
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information about our institute here: https://www.fz-juelich.de/en/ias/ias-8 Your Job: Develop 3D+t image reconstruction methods in a cell microscopy setting using image sequences as well as focus stacks
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regulatory RNAs. Characterization of RNA devices by structural biology methods such as cryo-electron microscopy (cryo-EM) and tomography (cryo-ET). Testing and screening of RNA devices by functional assays in
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(DNP) and 600 MHz solid-state NMR spectrometers equipped with an array of probes. The Venkatesh group has access to facilities for solution-state NMR, electron paramagnetic resonance, X-ray and