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Field
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the candidate will apply both wet lab molecular biology, genome editing, trait phenotyping, imaging/microscopy, and computational methods to meet this aim. The project aims to advance the mechanistic
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materials under applied electric fields Magnetic and magnetoelectric measurements at cryogenic temperatures Structural and microstructural characterization using diffraction and microscopy techniques Use
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of mammalian gametes or embryos Extensive experience with in vitro fertilization experiments Molecular biology techniques (RNA isolation from limited cells, RT-qPCR) Fluorescence microscopy or confocal laser
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focus on one of these research areas, using advanced microscopy, image analysis, genetic and optical perturbations, and biophysical approaches. You will also collaborate closely with theoreticians
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an advantage. This includes experience with cardiac cell work (including cardiac/valve cell isolation), qPCR, histology, antibody-based techniques, confocal microscopy, small molecules/nanoparticles-based
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gene editing, single cell RNA sequencing, bioinformatics, genetic engineering in mice, intravital microscopy and other imaging modalities, and a number of cell and molecular techniques. For more
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research project. This project will be to acquire single-molecule localisation microscopy (SMLM) data of proteins in T cells. Role Summary Work within specified research grants and projects and contribute
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. Operating and maintaining research laboratories, including advanced microscopy and spectroscopy equipment, in compliance with safety and laboratory protocols. Analyze data, prepare scientific publications
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the creation of new probes for sensing and imaging, the advancement of optical microscopy techniques, mass spectrometry, and NMR spectroscopy. Applicants will have a PhD or equivalent degree with postdoctoral
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phenotypes. -Execute standard molecular biology techniques, including PCR, Western blotting, and gene expression analyses. -Apply confocal microscopy to visualize cell-cell and cell-matrix interactions in 3D