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breast cancer dormancy -Participate in the development of novel biomaterials to model in vitro breast cancer micro-units in controlled 2D and 3D microenvironments -Monitoring breast cancer cell dynamics
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photopolymerization Formulate photopolymer resin for vat photopolymerization Design CAD models and prepare print builds Perform quality assurance and characterization for 3D printed parts Improve prototype through
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be to quantitatively compare the predictions made by the digital twins of the patients' faces with the post-operative reality. - Collection and processing of post-operative scanner imaging data
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candidate will translate new insights into identifying new drug targets for improved patient outcomes in periodontal health. Dr. McCulloch’s laboratory is described here: https://discover.research.utoronto.ca
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for the purpose of processing and analyzing multimodal neural data. Prototype and evolve hardware using tools such as 3D printing, electronics, and open-source platforms. Prepare program descriptions and
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manufacturing technologies and eager to develop and build experimental setups and combine this with physics-based modelling? Join us as a PhD candidate and contribute to making volumetric 3D printing predictable
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, PET MRI, Ultrasound (including 3D/4D, Thyroid, Head and Neck, High Risk OB, Vascular, Contrast Enhanced Ultrasound, Superb Microvascular Imaging, Elastography, and Saline Hysterosonography), Abdominal
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accuracy, supporting clinical decision-making, and promoting excellence in pediatric ultrasound imaging across the care team. Work Location: This role is expected to work on-site at the CHCO Anschutz Campus
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programs, including interstitial lung disease, lung cancer, lung cancer screening, and general pulmonary pathology. A full medical 3D printing service supports our section, and our clinical colleagues
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biology, engineering, biophysics, computer science) and experience in 3D imaging of brain tissue, image segmentation, and handling large datasets. You are comfortable with machine learning and image