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can be used as a therapeutic target to treat human diseases. In this context, one key methodology that we are using is constraint-based metabolic modelling approaches. Start in our team: We are looking
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of the Leibniz Association. Our institute integrates cutting-edge biomolecular research, bioinformatics, and high-performance analytical technologies to explore the complex interactions between
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Description Apply for PhD positions in structural, molecular, cellular and developmental biology, bioinformatics, genomics, evolutionary biology, and more. Are you passionate about uncovering the
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Leibniz-Institute for Food Systems Biology at the Technical University of Munich | Freising, Bayern | Germany | about 1 month ago
, is a prominent member of the Leibniz Association. Our institute integrates cutting-edge biomolecular research, bioinformatics, and high-performance analytical technologies to explore the complex
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, bioinformatics, and high-performance analytical technologies to explore the complex interactions between the human organism and food components. To strengthen our research group Molecular Modeling / Section III
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. Models: Cell culture and mouse studies will test selected BEV–brain pathways. Data analysis: Bioinformatics and statistical tools will integrate molecular data with existing clinical and lifestyle
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for ground-penetrating radar (GPR) and electromagnetic (EM) will be developed. These algorithms will enable high-resolution, quantitative time-lapse soil property measurements using high-performance, parallel
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at specific times and locations in order to support specialized functions such as metabolism or injury repair. Highlighting the importance of this process, alterations in RNP granules have been linked to ALS
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of this process, alterations in RNP granules have been linked to ALS pathogenesis and MN degeneration. Thus, a better understanding of RNP granules could lead to novel therapeutics to protect MN axons against
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, is a prominent member of the Leibniz Association. Our institute integrates cutting-edge biomolecular research, bioinformatics, and high-performance analytical technologies to explore the complex