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Field
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at the interface of biological physics, agent-based simulations and machine learning to turn quantitative imaging data into a mechanistic, testable model of spindle positioning. In particular, we expect
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. intracellular movement) using full-field OCT (FF-OCT), compatible with in vivo imaging. Full-field OCT is an imaging technique that enables 3D microscopy in scattering media, such as biological tissues [1]. One
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testing of exo-endocytosis on primary cultures of chromaffin cells and neurons (carbon fiber amperometry, pHluorine imaging). • Calcium imaging and measurement of lipid transfer at MCS. • Quantitative
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continuous measurements in moving, active subjects. To this aim, we will explore two approaches: a miniaturized laser speckle contrast imager and a diffuse correlation spectroscopy device, both incorporated
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is then assessed using a Beta probe imaging system, which determines whether the resection is sufficiently extensive to prevent recurrence while minimizing the removal of healthy tissue. However
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will have expertise in molecular and cellular biology and will notably perform labelling and imaging by STED of primary culture, modification of the cells by CRISPR-Cas9 to introduce mutations, and
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Inria, the French national research institute for the digital sciences | Villeneuve la Garenne, le de France | France | 23 days ago
), the objective of this internship is to improve the performance of full waveform inversion (FWI) algorithms for seismic subsurface imaging. This work lies at the interface between Earth sciences, mathematics, and
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, the candidate will address how mRNA translation contributes to germ granule biphasic architecture and biophysical properties. - Drosophila genetics - Molecular biology - Advanced imaging (super-resolution, single
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the advanced imaging techniques available, including confocal microscopy for tracking fluorescent MPs and developmental analyses, as well as Scanning Electron Microscopy (SEM) available at the MNHN site. He/she
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flux and the newly developed pixels detectors are opening new opportunities to investigate dynamics extending from sub-μs to thousands of second time scales. Nanoscale (~10 nm) imaging experiments