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contact zone before and after fusion—including bright-field, confocal, and super-resolution microscopy such as STED—are essential to resolve the spatiotemporal sequence of transient events underlying sperm
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electron microscopy techniques available at the IPCMS laboratory to investigate the structural and chemical characteristics of these innovative catalytic materials, as well as their evolution under thermal
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of the “Cell Signaling and Pathogenesis” team: https://cimiparis.fr/equipes/robert-weil/ Where to apply E-mail [email protected] Requirements Research FieldBiological sciences » BiologyEducation
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Free-standing Functional Oxides This PhD project focuses on the development of a stable, electron-transparent crystalline platform for advanced in situ transmission electron microscopy (TEM) studies
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on the PUMA beamline SOLEIL) and in the laboratory (microscopy, multispectral imaging). He or she will disseminate the results through scientific publications and presentations at international conferences. In
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profiles, and by electron microscopies (SEM, TEM) to observe the precipitation and the matrix (martensite, retained austenite) microstructures • Establishing prior austenite grain sizes by crystallographic
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. The dynamics of head eversion will be characterized by combining confocal and electron microscopy. These approaches will allow us to quantify changes in tissue shape, curvature, and thickness during
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, bacterial competition assays), microscopy (fluorescence) to visualize bacterial interactions. - Design and implement molecular biology strategies, including targeted mutagenesis to knock out or overexpress
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, electron microscopy, X-ray diffraction, etc.). Methodology: • Design and synthesize model substrates to measure the activity of enzyme mimics. • Develop analytical methods to detect and quantify chemical
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Polytechnique (Palaiseau) as part of the Advanced Microscopy team. The host team offers an interdisciplinary environment combining optics, computer science, and biology. The work will involve daily interactions