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strategies — developing systems that can respond dynamically to neural and behavioral signals in real time. Your Role: Develop and evaluate new methods for optimizing DBS therapy — from imaging and modeling
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the imperial collection (quire structure, copyists, watermarks, ruling), potentially including opera scores from other Viennese sources from the period under investigation; Ordering of digital images
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-atmosphere version of the general circulation model ICON, i.e. UA-ICON, a state-of-the-art high-resolution model of the neutral atmosphere with a model top at 250 km height. UA-ICON includes a deep- atmosphere
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have experience in routine molecular biology techniques like Western blotting, PCR, immunohistochemistry and/or microscopy. Experience with electrophysiology or live-cell imaging techniques like calcium
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, fluorescent in situ hybridisation (FISH), in vivo non-canonical amino acid tagging (NCAT), confocal and super-resolution imaging, molecular biology, biochemistry, and next-generation sequencing. In addition
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of human IPSC-derived neurons and glia cells. This will be complemented by genetic, proteomic and imaging techniques and subsequent data analyses. As such, we are looking for a candidate with an interest and
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—such as the 4D Imaging Lab, NanoLund, and MAX IV—will also be possible. Subject description This project will investigate the failure mechanisms of silicon-based anodes in solid-state batteries (SSBs), a
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imaging, especially in vivo imaging Coding experience in Matlab, Python or R Record of first-author publications or preprints Success in competitive funding schemes/awards Experience with inflammatory
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Previous Job Job Title Post-Doctoral Associate Next Job Apply for Job Job ID 370043 Location Twin Cities Job Family Academic Full/Part Time Full-Time Regular/Temporary Regular Job Code 9546 Employee
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, with experience of microbiology and scientific imaging, to conduct research into bacterial circadian rhythms. This will contribute to the ERC-funded programme “MicroClock” and an affiliated BBSRC project