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developing genetic risk scores as biomarkers for neurological disorders. The Rademakers lab leads cutting-edge research into risk genes and molecular mechanisms in Frontotemporal Dementia (FTD), while
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initiative investigating how human-specific features of brain development shape early behavior and neural circuit function in autism spectrum disorders (ASD). This position is a joint effort between the
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candidates to join us starting autumn 2026! Our different research groups explore how the brain and nervous system develops, ages and functions in health and disease, in particular neurodegenerative and
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Saelens team. Research Project In this research project you will develop probabilistic deep-learning models that automatically extract biological and statistical knowledge from in vivo perturbational omics
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facilities and training in advanced techniques. Opportunities for career development, networking, and mentorship. Support for presenting at international conferences and publishing in peer-reviewed
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translational cancer research. Omics based strategies, such as (epi-)genomics and transcriptomics, are opening unprecedented potential for developing novel precision oncology tools for improved diagnosis
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and Saeys teams. In this research project you will develop and apply algorithms to link clinical phenotypes of metastasis to molecular phenotypes in mouse models. It is known that metastases exhibit
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adults, significantly impacting quality of life, and remain challenging to treat. Our research group has pioneered innovative methods to study voiding behavior in mice and developed live imaging techniques
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differentiation, shaping the overall course of plant development. Importantly, the synergy and interdependence of hormone signalling pathways are critical for driving cell cycle progression. These coordinated
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from established collaborations and access to centralized facilities with expertise in functional genomics and cell biology, proteomics, cutting-edge microscopy, immunology, technology development, and