12 modelling-complexity-geocomputation Postdoctoral positions at Karolinska Institutet (KI)
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3 Oct 2025 Job Information Organisation/Company Karolinska Institutet (KI) Research Field Biological sciences Researcher Profile First Stage Researcher (R1) Country Sweden Application Deadline 30 Nov 2025 - 22:59 (UTC) Type of Contract Not Applicable Job Status Full-time Is the job funded...
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, troubleshoot complex data issues, and critically evaluate model performance. Excellent communication abilities are required to convey findings to both technical and clinical audiences, write manuscripts, and
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compartments including single cell- or bulk sorted immune cells and extracellular vesicles from the lung of the patient cohort, as well as from cell culture model systems. The studies are performed in close
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, miRNA, and proteome level from multiple lung compartments to construct a model of disease. The work will be conducted on one of several unique clinical cohorts designed to investigate different aspects
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approach combines behavioral experiments, psychophysiology, computational modeling, and brain imaging (fMRI). We offer a dynamic, international research environment where you can contribute to top-level
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to tackle the key area of critical importance to society: healthcare and biomaterials. Parlak team investigates the application of bioelectronics in medicine to meet the need for complex, dynamic environments
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in mouse models and cell cultures. Analyze and interpret omics data using bioinformatic pipelines in Python and R. Perform experiments in cell culture and animal models to validate the findings
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esophageal tissue using a variety of mouse models, organoid co-cultures and spatial sequencing technologies to identify relevant cell-cell interactions. We seek a curious, highly motivated, and creative
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models, applying CRISPR/Cas9 based gene knockout or other base/prime editing methods for human cells, such as T and B cells, induced pluripotent stem cells (iPSCs) and hematopoietic stem cells, and
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molecular and cell biology assays, generating iPSC and organoid models, applying CRISPR/Cas9 based gene knockout or other base/prime editing methods for human cells, such as T and B cells, induced pluripotent