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. Mutations and deletions of NR2F1 lead to Bosch-Boonstra-Schaaf optic atrophy syndrome (BBSOAS). Using neuronal cells derived from CRISPR/Cas9 engineered human induced pluripotent stem cells (hiPSC) we model
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strands. • Bespoke modelling of tumour metabolic function using 3D and 4D imaging data • Cancer patient risk prediction using machine learning (with experience in particular in radiomics and transcriptomics
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mechanics and propulsion, for which the AEROSQIN project constitutes a perfect framework. The candidate will advance techniques for large-scale 3D particle tracking by merging measurement theory and practice
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-performance computing for one or more of the following: (1) reconstruction of 3D+ structure, heterogeneity, and/or dynamics from scattering and/or microscopy data; (2) autonomous analysis and decision making
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of Veterinary Pathology seeks a highly motivated Postdoctoral Researcher to advance research through the integration of 3D organoid models and multi-omics data analysis. This position will leverage genomic
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for large-scale 3D particle tracking by merging measurement theory and practice with flow modelling for applications in industrial wind tunnels for the aerospace sector and oversee the application of helium
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synthesis, characterization, drug release studies, antibacterial assays, and biological evaluation under in vitro, ex vivo, and in vivo conditions using a porcine model. The project will also utilize
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of resistance to targeting therapies (antibodies, and antibody-drug conjugates) integrating clinical data, 3D cancer cell models, high-throughput approaches and co-culture systems. The successful candidate will
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of scientists focussing on understanding the role of smooth muscle cells in vascular calcification. This role involves the development of an engineered 3D flow system for understanding how mechanical signals
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into clinically deployable diagnostic and prognostic tools. The successful candidate will contribute to the development of a spatially resolved 3D atlas of the bone marrow, advancing precision diagnostics in blood