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on different topics related to wound healing. Project background Wound healing is a complex process in which a cascade of physiological events takes place to restore injured skin to its full functionality
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in biosensing, control switches, signal amplifiers and modulators, and high-performance photocatalysis. The conventional plasmonic materials include noble metals, e.g. gold, which was extensively used
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, called Wound Booster focused on the design of a self-care integrated system to completely understand, simulate and monitor skin wound evolution, with the ultimate aim to treat and prevent chronic wounds
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and inorganic powder-based materials for structural and functional applications. You will study and characterize the powder and formulation dependent granulation process to develop advanced ceramic
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is a key-enabling technology for advanced manufacturing. In order to address increasingly complex demands on joining (dissimilar materials combinations, miniaturisation, extreme operation conditions
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of this project, you will work with a team of scientists with backgrounds in chemistry, cell biology and microbiology as well as with clinical partners on the development of engineered corneal transplant to treat
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experience with X-ray methods and imaging Have preferably some additional experience in the biomedical domain and/or in image processing Have preferably some experience using ML models and tools (e.g
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. Empa is a research institution of the ETH Domain. Your tasks Your tasks will focus on the design and operation of experiments to investigate the failure mechanisms in wooden structures. This will require
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experience with X-ray methods and imaging Have preferably some additional experience in the biomedical domain and/or in image processing Have preferably some experience using ML models and tools (e.g
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of the lower back and one of the most common reasons for spinal surgery in people over the age of 65. However, the choice between the two major types of surgical treatment - decompression or fusion - remains con