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, and fluorescence-based assays. Mammalian cell culture, transfection, flow cytometry, confocal microscopy, and qPCR/ELISA, immunostaining, PCR, WB, NGS. Experience with animal handling, animal model
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experimental tools and protocols, including fluorescent reporters and genetic constructs, to monitor phenotypic variations in yeast in real time. The scientist will develop time-lapse microscopy, flow cytometry
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We are seeking a postdoctoral researcher with expertise in materials synthesis using CVD/PVD or van der Waals fabrication and characterization using scanning electron microscopy. Experience in
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using microscopy techniques, including Scanning Electron Microscopy (SEM) and Atomic Force Microscopy (AFM). The candidate will also map the nanomechanical properties of implant surfaces, assessing
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transcriptomic sequencing, cryogenic electron microscopy (cryo-EM), light microscopy, and proteomics. For more information, please visit https://www.helsinki.fi/hilife/bi
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on the kleptoplastidy system, including sample preparation and bioinformatics analyses. - 3D imaging (3D electron microscopy and expansion microscopy) to characterize the kleptoplastidy in different conditions. The
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hybridization, confocal microscopy, microCT, and electron microscopy. Ability to SCUBA dive within the AAUS framework is a plus. Position Type Research Additional Information Northeastern University considers
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accreditation • Proven experience working with animal models • Extensive expertise in histological and imaging techniques, including confocal microscopy • Proficiency in image analysis software (e.g., ImageJ
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megakaryocyte cell communication and coordination. We will employ a range of approaches including advanced microscopy (confocal and intravital), models of thrombus formation (ex vivo and in vivo ), and flow
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materials – including Raman, atomic force microscopy, and scanning electron microscopy, running reactors such as CSTRs to run various processes. and exfoliation of graphite into graphene using solution-based