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at the German Cancer Research Center in Heidelberg, is seeking for the next possible date a Postdoc – Spatial Single-Cell Perturbation Maps Reference number: 2026-0031 Our division is interested in systematically
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Postdoctoral Research Associate - Hybrid Computational-Experimental Scientist in Bacterial Drug Resp
bacterial drug responses and phenotypic heterogeneity at single-cell resolution. Our group integrates bacterial single-cell RNA-seq, long-read sequencing, functional genomics, microbiome models, and
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Postdoctoral Fellows to join a dynamic, fully funded research program investigating how environmental exposures and inflammation drive hematopoietic stem cell dysfunction, clonal hematopoiesis, and the
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Programme, co-funded by the European Commission’s MSCA COFUND initiative (Horizon Europe), is now accepting applications for postdoctoral fellowships. Why Charleston? Drive sustainable impact: Apply with your
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T cell biology or cancer immunology, and programming skills (R, Python) for data analysis. Please also read recent manuscripts published in the last two years 2024 Nature: (https://www.nature.com
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are recruiting a postdoc to study the hallmarks of aging among chronically stimulated and aged T cells. This individual will help us understand the cell-intrinsic and extrinsic mechanisms that enable extreme T
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Job Description We are seeking a highly motivated computational biologist to join our lab at St. Jude Children's Research Hospital to lead genomic and single-cell analysis for projects focused
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of high-dimensional single-cell data, the lab aims to reconstruct accurate cell-lineage trees and use them as a scaffold to map genome-wide regulatory dynamics across development. The lab is highly
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related field, with demonstrated computational research experience and a strong publication record. Proven expertise in gene expression analysis, including single-cell approaches. Strong programming skills
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stem cell biology, stress granule biology, multi-omics, and therapeutic target validation. Key responsibilities: Generation, maintenance, and differentiation of human iPSCs into midbrain organoids