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considered; We do not charge application fees; Research phases outside Germany during the funding period can be supported if they do not exceed 25% of the funding period, and do not take place directly at the
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are looking for a single cell and genomics specialist with a proven track record in the use and maintenance of flow cytometer/cell sorter instruments who is interested in working at the genomics facility
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non-relapsing secondary progressive MS – a subgroup currently lacking effective treatments. The work will include • Experimental animal handling and phenotyping (EAE models) • Flow cytometry, histology
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Max Planck Institute for Multidisciplinary Sciences, Göttingen | Gottingen, Niedersachsen | Germany | about 4 hours ago
), utilizing ‘omics technologies and bioinformatics. Students will either pioneer novel bioinformatics tools or they will push the current limits of our model systems by developing novel tools to study gene
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reliability and flexibility Experience in single cell/nuclei or spatial transcriptomics are preferable, but not required Experience in immunological techniques (e.g., flow cytometry) are a plus We are an
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to improve the use of artificial intelligence. This involves continuously optimizing the basic hardware components and refining the methods used to develop them. The design flow of these circuits and (sub
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Degree PhD Course location Potsdam In cooperation with The innovative PhD and postdoctoral scholarship programme is offered in conjunction with the Faculty of Digital Engineering, a faculty jointly
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findings to disseminate research outcomes and interact with the scientific community Anticipated tasks for the project: Integrate multi-omics datasets (including metabolomics, high-dimensional flow cytometry
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Course language English and German Current information Application deadlines: 15 March and 15 September Financial support No Structured research and supervision Yes Research training / discussion Yes
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biobanking of patient material Integrate comprehensive multi-omics datasets—including metabolomics, high-dimensional flow cytometry, and multiplex imaging—to accurately determine crucial molecular and cellular