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) This project takes place within the Marie Curie Doctoral Network on Soft Active Matter Microrobots for Medicine (SAM3). This doctoral network of 12 PhD candidates aims at exploring the ear-nose-throat area from
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characterization of materials for soft robotics applications (SAM3/ESR12 – soft robotics) This project takes place within the Marie Curie Doctoral Network on Soft Active Matter Microrobots for Medicine (SAM3
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for implementing response diversity enabled policy Network: ReDiLEEP - Using science-driven Response Diversity knowledge to Leverage Efficient Ecosystem Preservation and restoration Funding: Marie Skłodowska-Curie
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Invasion Research Network (MIREN ). Project description The biodiversity crisis is in part driven by invasive species, yet many non-natives are only recognized as invasive once they are widespread. A key
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-source scientific software
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including mental well-being, stroke rehabilitation, falls prevention, and chronic disease management. Profile Applicants must hold a Master’s degree (or be near completion) in Computer Science, Software
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the cell response. A key innovation in this PhD project is to engineer environmentally (cell)-instructive hydrogels with controlled architecture (pore size, network interconnectivity) and mechanical
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enzymes and can be engineered to generate reactive oxygen species (ROS) locally and in a controlled manner. The position is within the Marie Skłodowska-Curie Doctoral Network Implant-to-Market (i2M
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As part of this interdisciplinary project, you will: Establish patient-derived in vitro tumor models from EBV-positive malignancies. Engineer HLA-defined target cells using CRISPR/Cas9 genome editing
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Skłodowska-Curie Doctoral Network Implant-to-Market (i2M), providing an international and interdisciplinary training environment connecting materials science, biology, medical devices and regulatory science