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medical imaging principles. No specific medical knowledge is required. Bonus: experience coding in Python or equivalent programming language. Downloading a copy of our Job Description Full details
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characterization. Proven experience in development, operation and optimization of THz sources and detection. Experience in THz Imaging. Proficiency in Python programming to develop codes for post-data processing
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About Us A 3-year PhD-fellowship is available at the School of Biomedical Engineering & Imaging Sciences at King's College London. This position is part of the Cardiovascular Digital Twin network
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using X-ray coherent diffractive imaging and nanofabrications methods in two inter-related sub-projects. In one the student will manufacture structured ferroelectric films for demonstration of our newly
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and develop advanced fluorescence and imaging approaches, including FRET-based assays, fluorescence lifetime imaging (FLIM), live-cell microscopy, site-specific bio-orthogonal protein labelling by
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to the interests, needs and strategic outcomes of CENS and RSIS. They must think and act beyond immediate/personal interests and possess a bigger picture view. They must collaborate effectively across and within
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-frame-rate acquisition, coded excitation, tissue harmonic imaging, adaptive/specular beamforming, and functional imaging approaches such as Doppler and elastography. Drive the integration of hardware and
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/exosomes. Advanced cell culture, molecular biology and imaging approaches will be combined to study cellular responses and mechanisms relevant to oral disease and regenerative medicine. The overall aim is to
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signal processing, imaging, inversion, or source characterization, is highly desirable. Proficiency in Python, C++, or Julia, with strong numerical modeling, data analysis, and reproducible code
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Oral Tribology to 4D Micro-CT Failure Analysis”. The laboratory-based project combines dental biomaterials, development of wear-testing methods, mechanical characterisation and advanced X-ray imaging