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technology and 3D prototyping. You will examine a range of design and fabrication approaches for physically prototyping tactile objects and instruments. Additionally, you will develop and facilitate accessible
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research centre. The position is for one year, renewable subject to satisfactory performance. Successful candidates will conduct research and develop multimodal models. Candidates are expected to have a
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treatment due to its complexity. We will examine whether 3D assembloids, derived from cardiac-like, vascular-like, and brain-like structures, can more authentically model the human BBB and neurovascular unit
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. Erin Saupe) and the University of Leeds (Project Co-Lead Prof. Ben Mills). The post holder will specifically work to generate a series of reconstructive models of 3D ocean biogeochemistry through
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area of Gaussian Process based Simultaneous Localisation and Mapping (SLAM) and recent advances in non-parametric, 3D environment modelling. We will assess the utility of these tools for map-building
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, and treatment due to its complexity. We will examine whether 3D assembloids, derived from cardiac-like, vascular-like, and brain-like structures, can more authentically model the human BBB and
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flow, and iteration • Conduct prototyping, user studies, and usability evaluation 2. Generative AI & System Development • Develop pipelines for prompt-driven 3D scene and gallery generation
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National Center for Toxicological Research (NCTR) | Jefferson, Arkansas | United States | about 12 hours ago
to integrate three-dimensional (3D) human HepaRG spheroid cultures, error-corrected sequencing (ECS), benchmark concentration (BMC) modeling, and in vitro–to–in vivo extrapolation (IVIVE) to support quantitative
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Instituto de Investigação e Inovação em Saúde da Universidade do Porto (i3S) | Portugal | 3 months ago
research by proteomic/RNAseq analysis of secretomes; Experience in cell culture, including advanced 3D models; Experience in cell and molecular biology techniques; Organisational skills and synthesis skills
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of London, University College London, University of Cambridge, University of Glasgow, Heriot-Watt University, and Imperial College London and aims to deliver transformative advancements in 3D nanoscale