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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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, Human Biology, or a closely related field. Strong interest in cardiovascular physiology and disease, including cardiogenic shock, cardiothoracic surgery, and mechanical circulatory support systems
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the Faculty of Psychology and Neuroscience (FPN) At FPN, we share a curiosity about the human brain and behavior. Together with our students, we explore how our brains function and learn why we do what
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PhD Candidate: Modulating plant-based nutrition to enhance the sensory aspects and nutritional value
the department of Human Biology in Maastricht and Sustainable Nutrition in Venlo. The research facilities of Maastricht University - campus Venlo are located in Brighthouse/Villa Flora, in the Venlo region
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PhD Candidate: Modulating plant-based nutrition to enhance the sensory aspects and nutritional value
for satiety and health. The Food and nutrient bioavailability for satiety and health group is part of the department of Human Biology in Maastricht and Sustainable Nutrition in Venlo. The research facilities
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adipose tissue-derived secreted factors and extracellular vesicles influence cardiomyocyte metabolism and contractility, and on validating newly identified biomarkers using human stem cell-derived
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metabolism and contractility, and on validating newly identified biomarkers using human stem cell-derived cardiomyocytes. The project contributes to the development of innovative diagnostic and therapeutic
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of the project thereby complementing the human data analyses performed in Maastricht. Post-translationally modified proteins (PTMs) and their antibodies have been long-implicated in the etiology of auto-immune
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) treatments. PhD Candidate: Unraveling molecular mechanisms of genome instability in early embryogenesis Our goal: The goal of this project is to uncover why early human embryos are prone to genomic instability
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early human embryos are prone to genomic instability, using cutting-edge single-cell genomics and AI. By developing non-invasive methods to detect and predict developmental errors, you will help transform