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student will operate in the frame of the ANTARES project with all Researchers, Teachers-Researchers, Engineers and Technicians of the IEMN involved in the project. The Institute of Microelectronics and
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. Delpierre (Univ. Paris-Saclay) and will also be co-supervised by M.-C. Bel-Venner (UCBL) and Vincent Boulanger (ONF). The doctoral student will work within the Quantitative and Evolutionary Ecology
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of regulation of BMP1 activity, at the molecular, cellular and tissue levels, with the goal to develop innovative therapeutic approaches to treat wound healing disorders. Background Previous work has shown
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technique will be employed. Its specific purpose will be to render the tissue transparent in order to visualize the recording probe's trajectory with high precision and to confirm its anatomical location. A
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to study the molecular and cellular mechanisms involved in brain activity. The Institute develops innovative methods in imaging, chemistry, physiology and computer science. As part of Bordeaux Neurocampus
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to study the molecular and cellular mechanisms involved in brain activity. The Institute develops innovative methods in imaging, chemistry, physiology and computer science. As part of Bordeaux Neurocampus
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Offer Description This work thesis will be carried out in the Laboratory of engineering and macromolecular systems within the lipolysis and bacterial pathogenesis team directed by Stéphane Canaan
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Work Location(s) Number of offers available1Company/InstituteInstitut de Génétique HumaineCountryFranceCityMONTPELLIERGeofield Contact City MONTPELLIER Website http://www.igh.cnrs.fr/ STATUS: EXPIRED X
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are joint research and training projects funded by the European Union. Funding is provided for doctoral candidates from both inside and outside Europe to carry out individual project work in a European
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of these megasynthases, through a rational design approach, to alter its substrate specificity and generate variants capable of incorporating functionalized amino acids. The ultimate objective is to create strains