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sarcomas, where chromosomal translocations generate fusion oncoproteins that serve as drivers of the disease. By combining a toolbox consisting of CRISPR/Cas9, RNAi technology, cellular barcoding, and mouse
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) The main aim will be to profile the cellular components of tissue microenvironments (TME) in healthy and inflamed sites using State-of-the-Art Mass Spectrometry-Based Multi-Omics. We aim to dissect
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the UZH DEMETER (DEtector & Matter at Extremes TEst and Research) Center, which is developing new pixelated muon detectors for vertex reconstructed µSR and new pressure cell technology. UZH and PSI see
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to the success of the whole institution. At B CUBE, an Institute of the Center for Molecular and Cellular Bioengineering (CMCB), the Chair of Bioprospecting (Prof. Dr. Yael Politi, https://tu-dresden.de/cmcb/bcube
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to the success of the whole institution. At B CUBE, an Institute of the Center for Molecular and Cellular Bioengineering (CMCB), the Chair of Bioprospecting (Prof. Dr. Yael Politi, https://tu-dresden.de/cmcb/bcube
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University Medicine Dresden PhD Position (m/f/d) – Computational Biology & Single-Cell Genomics – Decoding Brain Development at the Institute of Clinical Genetics The doctoral position is available as soon as
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focus on the formation of neuronal circuits. Within the framework of the “ThalamoConnect” project, state-of-the-art single-cell technologies and bioinformatic analyses are employed to decipher the genetic