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the analysis of protein aggregation. The project integrates stem cell biology, stress granule biology, multi-omics, and therapeutic target validation. Key responsibilities: Generation, maintenance, and
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approach. Fundamental research focuses on induced pluripotent stem cell (iPSC)-derived neuronal models to elucidate the molecular and cellular alterations contributing to neurodegeneration in familial and
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the analysis of protein aggregation. The project integrates stem cell biology, stress granule biology, multi-omics, and therapeutic target validation. Key responsibilities: Generation, maintenance, and
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by integrating large-scale single-cell foundation models with structured biological knowledge encoded in genomic graphs. The project will also deliver efficient algorithms to train these models under
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del Sol, which develops computational models to address challenges in stem cell research, aging and disease modeling. The group employs methodologies from different areas of mathematics, engineering