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modelling, CFD mesh generation in complex 3D geometries. Proficient in handling large data sets and the ability to analysis and interpret results. Experience in commercial CFD package such as ANSYS package
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independent experiments under the guidance of the Lab Head. Perform immunofluorescence analyses and live-cell imaging of 2D and 3D cell culture and co-culture models using a variety of optical imaging
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themes: (a) learning efficiency, computational creativity (zero, few-shot, and long-tail learning of 2D and 3D vision tasks. This also includes efficient generative models that are capable of generating
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targets. Her lab combines genetically engineered mouse models, patient-derived organoids, and advanced genomic tools to investigate how Wnt signalling and cell state plasticity contribute to homeostasis and
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pathways) are desired. Experience in handling 2D and 3D cell cultures such as hepatocytes, adipocytes or skeletal muscle cells is essential. Molecular Biology skills (RNA/protein extraction, qPCR, western
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in the development, validation, and optimization of 3D-printed Ship Hull and Connector System. This includes conducting finite element modeling, ship resistance and stability assessments, as
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that explore new 3D chemical space, to AI-guided synthesis, flow automation and direct-to-biology screening. By coupling Bath’s strengths in synthetic chemistry, chemical and structural biology, and advanced
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of the following: sensor modeling; surface reconstruction; InSAR and related high-resolution, rapid revisit optical systems; automated image matching and registration; error propagation; historical
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remodeling microglial responsivity in AD mouse models (Lee, Neuron , 2018, PMID: 29518357). Developing MORF method (akin to "genetic Golgi staining") and novel imaging/informatic pipeline for 3D whole brain
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- proven experience in: a) Ergonomics and human factors, especially in biomechanical and anthropometric analysis; b) Product development, including conceptual design and CAD modeling; c) Planning and