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), a unique technology capable of non-invasively monitoring tissue oxygenation, haemodynamics and mitochondrial metabolism. The position is funded through the newly established £50 million Medical
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Johns Hopkins Medicine - Laboratory of Human Biomimetics | Saint Petersburg, Florida | United States | 21 days ago
to develop advanced human microphysiological systems for immune-mediated disease and multiorgan biology. Our group reverse-engineers human physiology using primary tissues, organoids, microphysiological
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translation. Candidates should have a PhD (or near completion) in a discipline relevant to gene delivery, cell biology and/or tissue engineering. Past experience of cell culture, hydrogel systems and cell
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in material sciences, biomedical engineering, cancer and immunology. The candidate should have experience in tissue slicing, spatial omics and/or nanofabrication. To apply, please send your cover
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electromagnetic and thermal simulations. This work will include detailed tissue segmentation from medical images, integration of automatic and semi-automatic segmentation algorithms, refinement of anatomical
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mammary epithelial cell culture technologies, breast tissue mimetics, engineered cell culture microenvironments, and cell culture substrata. · Design and perform competition and functional-fitness
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- $118,416 p.a. (*PhD entry level $110,319) Level B: AUD $124,656 - $148,023 p.a. plus 17% superannuation Advance avian developmental biology and embryology / uncover the basis of skin appendage patterning
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Role type: Full-time; Fixed term (12 months) Faculty: Science School: School of BioSciences Salary: Level A: AUD $87,266 - $118,416 p.a. (*PhD entry level $110,319) Level B: AUD $124,656 - $148,023
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observe how new treatments interact with a living, beating heart. This lack of real‑time visibility slows progress in regenerative medicine, particularly for therapies such as engineered heart tissue (EHT
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, community service, research, and technology development, guided by its Strategic Principles. The mission encompasses patient care, education, and research to enhance societal contributions nationally and