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for the optimisation and development of medical devices, particularly cardiovascular and urological devices, through the advancement of knowledge of soft tissue mechanics and the use of non-invasive imaging techniques
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, micro-indentation, and micro texture analysers (e.g., TA.XT plus), Confocal Laser Microscopy Imaging etc for the purpose of quantification of hardness, chewiness, springiness, fracture stress, and
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(this overlaps with the former themes as 2D and 3D vision is often integrated with language). Related papers by the Vision-CAIR members Theme A : Aligning Latent and Image Spaces to Connect
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enthusiastic Research Fellow to help in the development and application of novel 3D bioprinting methods for disease modeling and therapeutic tissues. The ideal candidate will report to the Principal Investigator
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cells to generate vascularized 3D cerebral organoids derived from participants of the Trønderbrain cohort and will apply a broad range of molecular biology techniques, confocal imaging, and neural
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· Microsurgical techniques (e.g., dissection, ligation, suturing) · Organoids and 3D culture systems · Vascular/endothelial biology or stem cell biology · Single cell biology, scRNA/snRNA
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pathophysiology of the inner ear using multiple genetic mouse models and a novel human stem cell-derived 3D inner ear organoid model. We study genetically-mediated hair cell and neuronal degeneration in these model
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depends on the background of a suitable candidate. The main topics of the group in the past few years were generative modeling, 3D reconstruction, image-editing, and deep learning using 3D data. More