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: Professor Marinko Sarunic Project Description: Optical coherence tomography (OCT) is widely used clinically in ophthalmology and is essential in the diagnosis and treatment of retinal disease. Ophthalmic OCT
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materials and we utilise these non-absorbed X-rays to massively increase image contrast and reduce radiation exposure using coherent synchrotron radiation. We have developed these “phase contrast” and “dark
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Assistant (Doctoral Candidate) with specialising in optical coherence tomography (OCT) (salary scale 13 TV-L, 75 %) The fixed-term position is for a duration of 36 month in accordance with the project
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persists, even for the most powerful sensors operating in this way. A drastic departure from this sensing architecture is “multistatic” radar – enacted by a coherent network of spatially distributed sensors
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of systems biology, virology, high-throughput genetics, genomics and proteomics, molecular and cell biology, high content automatic imaging, chemical biology, and organic chemical synthesis. The program Our
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to research this topic. Interest in laboratory work and basic technical understanding. Fluent written and spoken English. Programming skills in e.g. Python, R, Matlab and Java. Experience in image processing
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Hyperspectral (and RGB) imaging o Chlorophyll fluorescence measurement o Optical coherence tomography (OCT) Further development of an existing method for registering imaging data Development
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generating coherent text, mimicking human-like conversations, and completing complex language tasks such as translation and summarization. However, despite their powerful generative capabilities, these models
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, Attosecond science , Biological Physics , Biology , Biophysics , Biophysics/Soft Condensed Matter Theory , Biotechnology , Casimir effect , Chemical Engineering , Chemical Physics , Chemistry , Coherent
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Max Planck Institute for the Structure and Dynamics of Matter • | Hamburg, Hamburg | Germany | 25 days ago
the theoretical and experimental aspects of condensed matter and atomically resolved dynamics, fundamental light-matter interaction, accelerator-based light sources, coherent imaging, coherent controlled molecular