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Brillouin microscopy on cells and tissues to perform AFM in force spectroscopy mode and to compare AFM and Brillouin results in order to build a new theory of viscoelasticity modification due to acquisition
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the laboratory of Dr. David Hoffman. The Researcher will contribute to an active research program focused on single-molecule biophysics, super-resolution microscopy, human stem cell engineering, membrane
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the laboratory of Dr. Tai-Yen Chen. The Researcher will contribute to an active research program focused on single-molecule biophysics, super-resolution microscopy, quantitative analysis of membrane protein
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to use cutting-edge tools such as single cell genomics, epigenomics, high-resolution microscopy, novel transgenic mouse models, 3D organoid in vitro models, and customized bioinformatics pipelines
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well as train and support lab scientists on various cell biology and microscopy techniques including live imaging using confocal microscopy Train and support lab members on standard and emerging molecular biology
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: Archeometallurgical analyses SEM-EDS microscopy and chemical composition analysis of iron artifacts, slags, and ores GIS spatial analysis, statistical analysis, and network analysis of iron production Other
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visual neuroscience experiments / Access world-class imaging and microscopy platforms / Build supervision, publishing and grant-writing experience Apply now to drive innovative retina and brain research
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technologies, histology, microscopy, immunology, flow cytometry, and high-throughput sequencing preferred but not required. To apply, please send your cover letter (1-page limit) explaining your most significant
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models of cancer, optical microscopy and spectroscopy, and image analysis in the Department of Biomedical Engineering. The SRA will oversee and manage the work of graduate students and undergraduate
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material characterisation, including: AFM (including PFM or other nanoscale electromechanical modes) SEM/TEM Confocal microscopy Rheology FTIR, XRD, XPS Evaluate degradation profiles, electroactive behaviour