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of the tissue using water-soluble clearing and refractive index matching media, and evaluating the benefits of this approach for three-dimensional imaging. The first year of the project will focus on optimizing
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necessary for calculated reciprocity. Thus, the poor performances observed raise questions about the role of social regulation on primates' abilities to exchange and barter. The aim of RE-PAIR is to replace
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, incomplete, inconsistent, or affected by uncertainties, limiting their use for asset knowledge, infrastructure maintenance, and urban risk management. In this context, the central research question of this PhD
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a focus on understanding cell division, genome stability, chromosome dynamics, mitochondrial function, and the molecular mechanisms underlying human health and disease. Cohesin, cellular adaptation
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autophagic pathways. Using advanced imaging, cell biology, and biochemical approaches in human iPSC-derived astrocytes and neuronal models, the project will characterize the molecular mechanisms linking
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capacities (around 280 IT) in all the major fields required to design, develop / implement the experimental devices necessary for its scientific activity, as well as the design, development and use
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resistance of ceramic shell moulds used in investment casting. Advanced in situ experiments combined with multi-scale Finite Element Method (FEM) modelling will be employed to identify the key stress and
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will design and fabricate three-dimensional microparticles and microstructures with controlled geometrical and mechanical properties using advanced microfabrication technologies, including
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environment including researchers, engineers, and graduate students. Experimental work will be conducted within the laboratory's research facilities using standard equipment dedicated to human cognitive
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representation of the vertical coordinate in numerical ocean models used to simulate ocean currents, temperature, and salinity. These developments will improve the representation of deep-ocean circulation and