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the interface of machine learning and biology (tools developed by the team: https://github.com/cantinilab ). The team is composed of 8 people : 3PhD students, 3 post doc, 1 research engineer and 1 assistant
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completed training as a Biomedical Laboratory Scientist or hold a comparable academic qualification (e.g., Master’s degree in Molecular Biology, Tissue Engineering, or Molecular Medicine) and have relevant
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of brain tissue. - collaborate with graduate students or postdoctoral research fellows in the lab on various projects related to the neural circuits underlying reward-related behaviors. - possibility
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, processing of bioceramics, biopolymers and biocomposites for tissue engineering, also involving electrospinning and additive manufacturing technologies. The doctoral thesis will be in the context
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in education, patient care, community service, research and technology development, and through leadership activities in Michigan, nationally and internationally. Our mission is guided by our
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, Manchester and Strathclyde and STFC Accelerator Science and Technology Centre (STFC ASTeC). The Cockcroft has three major research themes, frontier facilities (e.g. the Large Hadron Collider), advanced
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of Biomedical Engineering Department of Life Electronics Department of Imaging and Information Department of Biomaterials and Tissue Engineering Department of Neurorehabilitation Engineering Faculty of Materials
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description Lab Overview (University of California, San Diego (Bioengineering) Research Themes: Matrix Viscoelasticity, Organoids, Immunology, Genetic Engineering The Mechanotransduction in Immune Network
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, controlled force sensing and actuation and related tools for probing and controlling biomolecular systems, cells, and tissues. Another area of interest is Computational Bioengineering, including but not
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biological specimens, including: • Engineered Heart Tissues (EHTs) • Brain organoids • Live biological cell cultures • Fish and aquatic biological samples Multiple scattering severely limits image contrast and