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selection, wafer-level process development, and reliability demonstration to deliver a manufacturable 3D-integration solution that supports NTU’s leadership in industry-relevant advanced packaging research
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: endothelial cell culture, barrier function assays, calcium imaging, confocal microscopy ● Bioengineering & flow models: microfluidic systems, 3D flow chamber assays, hemodynamic modeling ● Animal
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vascularized patient-derived organoid platform enabling intravascular dosing, real-time imaging, and downstream tissue retrieval for flow cytometry and single-cell/spatial profiling. The Lab works at
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fewer bullets will be disqualified. Name one paper published after January 2024 that changed how you think about 3D generative models or volumetric defect synthesis. Give the title, one thing it got right
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Instituto de Investigação e Inovação em Saúde da Universidade do Porto (i3S) | Portugal | 3 months ago
to harness organ-on-a-chip technology to study metastatic dissemination in gastric cancer. We propose a xurography-based technology to fabricate a prototype of a multi-organ-on-a-chip microfluidics platform
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functional brain imaging and 3D human kinematics. This funded research brings together multidisciplinary expertise from Singapore Institute of Technology (SIT), National University of Singapore (NUS), National
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are currently using include: organoid culture, CRISPR genome editing, CUT&RUN/ChIP, scRNA-seq/scATAC-seq, 3D imaging/expansion microscopy, proteomics, and mathematical modeling. IUSM is committed to being a
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limited to: Developing skills in planning and conducting 3D organoid cell culture procedures. Gaining experience carrying out research studies in organoid biology and nutrition Participating in
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: Generative AI for visual exploration of biomedical data Interfaces for collaboration with AI Co-Scientists Multimodal clinical data visualization, including EHR, imaging, genomics, and clinical trial data
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, through the advancement of knowledge of soft tissue mechanics and the use of non-invasive imaging techniques. The aim of this project is to create and test biomimetic silicone-MEW valves and optimise