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methodologies including in vivo calcium imaging, optogenetics, electrophysiology, and molecular approaches. The work will be conducted in an international and collaborative research environment, offering
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are seeking candidates interested in conducting research in the following areas: understanding the molecular pathomechanisms of human diseases caused by nucleotide repeat expansions, generating transgenic cell
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processes upon targeted manipulation in relevant modalities. The ideal candidate has a strong motivation to perform translational research in neuroscience, presents solid background knowledge in molecular
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high potential for progression. The aim of the project is to develop an innovative in vitro model enabling investigation of the (micro-)invasion process in DCIS and identification of molecular markers
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PhD student. Your role: You will perform PhD studies in plant molecular, cell, and developmental biology. You will work in the field of plant endomembrane system and use Arabidopsis thaliana as model
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characterizing the epigenetic landscape of DM-associated genes and mapping their regulatory elements in cellular models using genomic methods (e.g., ATAC-seq, CUT&RUN, Capture-C, Micro-C). Next, in collaboration
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of optical signals and for modeling optical metamaterials at the nanoscale based on lithograph-free, quasi-ordered arrays of plas-monic nanoantennas obtained with TDW/GLAD, development of plasmonic