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delivery with specific focus on development, validation, and characterizations of new biodegradable and biocompatible hydrogels for pharmaceutical-relevant applications. For more details, please view https
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explore the frontiers of micro- and nano-scale 3D X-ray imaging. Our next challenge is to visualize hydrogel matrix for cell cultures using phase contrast X-ray microscopy with one of our laboratory X-ray
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of tissues submitted to plasma-treated hydrogel treatment. The ultimate goal of this project is to gain a fundamental understanding of the effects of atmospheric pressure plasma-treated hydrogels on redox
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on the ERC project Learning Matters!. Task You will implement learning mechanics in soft matter, specifically in biocompatible hydrogels. Your hydrogels will form the walls of a synthetic vein network that can
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Experience in the development of advanced drug delivery systems Strong background in polymeric biomaterials and hydrogel-based systems Experience in controlled and sustained release studies Experience in wound
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Hierarchical Failure Analysis and Digital Twin Modelling of Next-Gen Hydrogel Coatings School of Mechanical, Aerospace and Civil Engineering PhD Research Project Directly Funded Students Worldwide
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Planck Queensland Center (https://research.qut.edu.au/mpqc/ ). You will participate in regular consortium meetings and larger consortium events Suggested reading: • Bakhshandeh, Heras et al, Science
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hydrogel-based biomimetic matrices (notably GelMA) to support the generation, maturation and functional optimization of multicellular adipose organoids, and integrate them into microfluidic platforms
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further both professionally and personally in an interdisciplinary setting. Position DWI invites applications for a position as PhD student (f/m/d) in Electrospinning of Hydrogel Fibers for Biomedical
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, chemistry, biochemistry, biology, or related field. Experience in biomaterial synthesis and functionalization. Experience in microfluidics and hydrogel formation. Experience in cell culture and sterile work