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and in pathological models, we aim to establish direct links between molecular determinants and muscle physiopathology Detailed Description of the Project : Not all muscles in the body are equivalent
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with dynamic covalent bonds to enhance matrix stability while preserving its capacity for remodeling. These biomimetic hydrogels will simulate pathological conditions such as those seen in diabetes and
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neurodegenerative diseases. The most promising candidates will be assessed using advanced docking and dynamics simulation techniques, providing insights into their potential interactions. To further substantiate
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questions in origins-of-life research. Meteorites provide evidence that this molecular asymmetry predates Earth’s formation, possibly originating in cold, water-rich ices irradiated by circularly polarized
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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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extensive magnetic and electrical characterization of 300mm fabricated devices, potentially with support of micromagnetic simulation. In this course, alternative materials and methods will be developed using
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join the dynamic and interdisciplinary xCIT research group (https://xcit.org/ ), which is composed of researchers working on how to use and create digital technologies to study and improve human's lives
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methods for single-cell data analysis (tools developed by the team : https://github.com/cantinilab ). Single-cell high-throughput sequencing, extracting huge amounts molecular data from a cell, is creating
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character. Modern institution with a personal atmosphere. Staff coming from 90 countries. Member of the "University of the Greater Region" (UniGR) A modern and dynamic university. High-quality equipment
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implement innovative solutions to enable seamless operation in connected and autonomous mobility use cases. - Validate research outcomes through a combination of high-fidelity simulations and