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Field
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orientation. Relevant projects may make use of large-scale survey data, administrative or register-based data, repeated cross-sectional or longitudinal designs, evaluation studies, or combinations
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relaxation, and elevated filling pressures—cannot be measured directly using current non-invasive methods. This project aims to improve the assessment of diastolic function by combining echocardiographic
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investigating the terrestrial cryosphere and is involved in various high-level research projects and centers. (See for instance http://www.mn.uio.no/geo/english/about/organisation/geohyd and https
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research projects and centers. (See for instance http://www.mn.uio.no/geo/english/about/organisation/geohyd and https://www.mn.uio.no/geo/english/research/groups/remotesensing ). We are a growing, lively
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Analysis, with particular emphasis on multiparameter persistence and applications to medical data. The project will combine theoretical work on multiparameter persistence with the design and implementation
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for estimating transvalvular pressure gradients and valve severity. By combining controlled experimental studies with patient-specific valve geometries, the project will identify haemodynamic and anatomical
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quantify changes in genetic diversity and variation through time, and investigate how these patterns vary across the genome. The project will combine an existing dataset of approximately 200 contemporary
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research projects and centers. (See for instance http://www.mn.uio.no/geo/english/about/organisation/geohyd and https://www.mn.uio.no/geo/english/research/groups/remotesensing ). We are a growing, lively
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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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for Physical Geography and Hydrology, which has long-term experience in investigating the terrestrial cryosphere and is involved in various high-level research projects and centers. (See for instance http