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“minimal” and modular gene cascade to control MeCP2 re-expression and avoid any dosage drift. The thesis work will consist of designing and testing vectors containing gene cascades first during a first
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with UV and radioactive detector, dose calibrator, automatic gamma counter, digital autoradiography, animal blood cell counter, and a range of small animal imaging systems (bioluminescence/fluorescence
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adult brains. These cells reside in tightly controlled microenvironments called “niches.” Objectives of the PhD project: The gestation and maternity periods in mammals open a window of important brain
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INP - UGA, Grenoble Alpes University and the CNRS, in the field of Electrical Engineering Research. It covers a scientific spectrum ranging from materials and components to the design and control
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for automatic process generation. Generative approaches, using deep learning algorithms, can generate new process structures, surpassing conventional optimization techniques. Objectives of the ATHENA project
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of ultrasound therapy and their control in real time. This team develops new methods for the control of ultrasonic cavitation, a phenomenon that enables the permeabilization of numerous biological membranes
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the growing industrial demand for efficient thermal management, this PhD project focuses on developing low-cost, low-tech, self-adaptive vortex generators as passive flow-control devices for various
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: skills in instrumentation and experimentation; signal processing and electronics; computer science, C/C++ coding; Familiarity with system dynamics and control; Familiarity with computer graphics, 3D
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on the use of zeolites as sacrificial templates to obtain structured carbon nitrides. These materials are expected to combine very high surface areas, controlled microporosity, and a high density of defects
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research in information and digital technologies (computer science, automation, robotics, artificial intelligence), with the aim of developing methods for representation, analysis, and control of complex