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focuses on the use and development of human brain organoids, with the overarching goal to understand mechanisms of human brain development and disease, and to unravel the link between the two. Research
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this project, you will develop new image analysis methodologies for less invasive and non-invasive quantitative brain PET studies using LAFOV PET/CT. You will work on model-independent kinetic analysis methods
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diseases, including Alzheimer’s disease, frontotemporal dementia and ALS, as well as other brain disorders such as multiple sclerosis. The department works closely with the Netherlands Brain Bank, providing
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shaped brain region, implicated in a wide range of functions. The cerebellar cortex, a thin layer of grey matter, is very tightly folded, resulting in a highly convoluted architecture. Its visualisation
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POLARIS doctoral network POLARIS is a European Marie Skłodowska-Curie Doctoral Network focused on accelerating therapy development for leukodystrophies: rare genetic disorders affecting the brain's
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Brain Plasticity and Dynamics to help ensure Effective and Sustainable Health Care and Rehabilitation), is a new European Marie-Curie doctoral training network. Fifteen doctoral candidates will explore
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the brain white matter. The network aims to strengthen the full translational pathway from disease mechanism and model development to preclinical therapy testing, clinical readiness and patient-informed
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Welcome to Maastricht University! How does the human brain transform complex natural sounds into meaningful percepts, and can artificial neural networks help us understand this process? Join the
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of room and responsibility to develop your talents and realise your ambitions. Therefore, we provide various training and development schemes. Where you will be working The Donders Institute for Brain
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-) immunoprecipitations from neuronal cell models and brain tissue followed by quantitative LC-MS/MS, and you will run that workflow from end to end – from sample preparation to data analysis and interpretation. Candidate