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experiments to evaluate different debridement tools for infected implants and subsequently analysis. Throughout the in‑vivo phase you will develop a clinical protocol suitable for first‑in‑human pilot studies
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in programming language theory, algorithms, distributed systems and logic Experience with language-based techniques for information-flow analysis or access control, formal methods or semantic
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approaches from STS and/or innovation studies such as valuation studies or care studies will be considered an advantage. Experience with qualitative document-analysis, ethnography and/or interview studies will
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for appointment. Good knowledge of programming and data analysis using Fortran, Matlab, Python, or similar programming languages. Experience in using and developing models to simulate natural systems. Knowledge
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the following will also count in the assessment of the applicants: optogenetics, chemogenetics, computational and statistical methods for analysis; rodent behaviour, histology methods, sleep scoring
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implants and subsequently analysis. Throughout the in‑vivo phase you will develop a clinical protocol suitable for first‑in‑human pilot studies, integrating the insights gained from animal work with
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. The applicant's estimated academic and personal ability to complete the project within the time frame The applicant's ability to complete research training Methodological skills in textual/cultural analysis and/or
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in Integreat and secondly, in a co-authored publication together with Anna Smajdor, based on ethical analysis of the findings from the overall project. In addition to the research activities described
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an approved doctoral thesis and public defense are eligible for appointment. Good knowledge of programming and data analysis using Fortran, Matlab, Python, or similar programming languages. Experience in using