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Multi-omic Analysis and Methodological Development for the Evolutionary Study of the Uterine Mucosa in Mammals The EVUTERO project (Functional Evolution of the Uterine Mucosa in Mammals) aims
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science, geomatics, urban modelling and data-driven city analysis. We develop innovative technologies for modelling and managing 3D cities, buildings and landscapes, and maintain strong collaborations with industry
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state-of-the-art capabilities across materials science and life sciences. The Director will shape the facility into a globally leading centre for atomic-scale imaging and analysis, driving both frontier
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School graduates over a thousand students who are ready to take on great ambitions and challenges. For more details, please view: https://www.ntu.edu.sg/eee We seek a Research Fellow to advance
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Job Purpose You will contribute to a project Development and application of advanced high-resolution 3D cellular and subcellular time-course imaging in the beating heart” working with Professor
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to address key experimental and computational challenges currently limiting the clinical translation of spatial biology. By integrating multi-omics approaches, enabling the transition from 2D to 3D tissue
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. Training is available in a variety of super-resolution quantitative microscopy and image analysis techniques, and mass spectrometry. PI commitment to mentoring and career development opportunities tailored
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statistical modelling, medical imaging data analysis, cancer omics, precision medicine and translational statistics. Depending on their profile, the successful candidate will work on one of the following
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samples, including tissues, two-dimensional (2D) and three-dimensional (3D) cells, and biofluids, for metabolomics analysis by NMR. They will also be responsible for the acquisition, processing, and quality
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of dimensional measurement and QA process. 3D modeling using a CAD tool (Experience in Solidworks and PDMWorks preferred.) FEA modeling and analysis of Opto-mechanical system (Experience in Ansys preferred