19 algorithm-development-"Multiple"-"Prof"-"Prof"-"St"-"Simons-Foundation" positions at Institut Pasteur in France
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Python-based frameworks or a web application) enabling image upload, AI-based analysis, and visualization of bacterial phenotypes. Perform image analysis using existing deep learning algorithms developed
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which neural network effectively conveys this information are central questions in the field of hearing and neuroscience in general. We are developing several complementary approaches to answer
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cells at the choroid plexuses on brain development. Our lab investigates how immune cells and signals shape brain development, activity, and aging. In this project, we aim to dissect the contribution
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Postdoctoral position: Developing a human lymphoid organ-on-chip to evaluate candidate mRNA vaccines
A post-doctoral position is available to develop a 3D model of a human lymph node and apply this model to preclinical vaccine evaluation. The successful applicant will join the team of Lisa
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between genetics and environmental factors in metabolic-related disorders using multiple innovative methodologies and large human biobanks. The project encompasses 1) Developing strategies to identify and
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collaborative, international, and supportive lab culture. Access to cutting-edge facilities and interdisciplinary collaborations. Mentorship and career development support, including networking and grant-writing
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Simulation and Physics of Drosophila Larva Body Dynamics Introduction The “STRETCHED” project aims to develop a robust, physics-based 3D simulation platform to replicate the motor control dynamics
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mediate binding under physiological conditions. The ultimate goal is to establish a detailed structural framework for understanding pili-driven adhesion, opening avenues for the development of anti-adhesion
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The Technology Department (DT) aims to develop a cutting-edge technological environment to strengthen the scientific excellence of the Institut Pasteur. It provides access to exceptional shared resources
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offers a unique opportunity to work at the intersection of computational physics, neuroscience, and biomechanics, developing physics-based simulations that bridge neural circuits, muscle activity, and