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schools in the world. For more details, please view https://www.ntu.edu.sg/mae/research . Key job purpose is to support a research project titled: Ultrasonic Diagnosis for cell SOH grading. Key
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— investigating how mechanical forces from focused ultrasound alter immune cell function and tumor microenvironments Acoustic tool development — designing next-generation transducers, wearable ultrasound devices
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Institute (MBW) experimentally addresses fundamental problems in molecular cell biology, integrative biology, and infection and immunobiology. State-of-the art and advanced methodologies are applied in a
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experimental systems — from ecosystems to microbiology and developmental biology, from evolution to cell biology, from molecular biology to systems biology, bioinformatics, and genomics. It is always an exciting
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interdisciplinary (https://juanguanlab.wixsite.com/biophysics/ ). The team combines cell biology, quantitative imaging, and biomaterials to probe the underlying mechanisms in biophysical systems and explore new bio
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under the project “Experimentally evolving budding yeast cell size to test scaling laws in cell biology”, with the funding support from “HFSP_RGEC28/2023”. Scientific Area(s): Cell biology and Evolution
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chromosomal copy-number alterations with protein-defined cell states in intact tissue, linking early genomic changes (e.g., MYC, CCNE1 gains) to local immune microenvironments at single-cell resolution
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related with the aim of this position. The candidate(s) should have knowledge in basic laboratory techniques, including cell culture, molecular biology methods (such as RT-qPCR and western blot
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platforms, including tribology, Kramer shear cell testing, and mastication simulators to investigate breakdown characteristics, brittleness vs. plasticity, and frictional/lubrication properties. Generate
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lab at Harvard Medical School in Boston, Massachusetts. The Brugge lab has identified populations of breast epithelial cells that carry chromosome copy number alterations (CNAs) that are among the most