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for next generation sequencing. We are currently seeking an enthusiastic and highly motivated lab colleague to join our divers and dynamic team of lab technicians and bioinformaticians. Your Role You
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next‑generation sequencing (NGS), quantitative repertoire analysis, and AI‑based structural modeling. The successful candidate will play a central role in extracting biological and structural insight
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next‑generation sequencing (NGS), quantitative repertoire analysis, and AI‑based structural modeling. The successful candidate will play a central role in extracting biological and structural insight
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spoken English. Experience in Python and/or R. Experience with Linux and Bash. Experience with bulk, single-cell or single-nucleus RNA-sequencing data. Ability to troubleshoot and resolve
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. Access to excellent and staffed core facilities at the Center , at VIB , and at KU Leuven (including sequencing, proteomics, single-cell, microscopy, data core, and many more). Possibility to also
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Group Leader and Professor AI in Biology - Dept of Computer Science and Dept. Electrical Engineering
to computing cluster infrastructure at the VIB Data Core and Flemish Supercomputer Center . Access to excellent and staffed core facilities at the Center , at VIB , and at KU Leuven (including sequencing
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of neurodegeneration, totaling to over 1,500 human brain samples. Using an array of -omics techniques, e.g. long read DNA sequencing, single nuclei transcriptomics & ATACseq and multi-modal proteomics, the team aims
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sequencing data generation and interpretation Bioinformatics and statistical analysis, to characterize genome evolution, mutation processes, and adaptation patterns The PhD candidate will progressively
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sequencing data generation and interpretation Bioinformatics and statistical analysis, to characterize genome evolution, mutation processes, and adaptation patterns The PhD candidate will progressively
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. The research will involve training machine-learning models on large structure and sequence datasets and integrating membrane-specific biophysical constraints to enable the design of membrane proteins and