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genetics, genomics, imaging processes, computational biology and biochemistry. Our goal is the deep and detailed understanding of fundamental mechanisms in plant biology that may then also be used to develop
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exploration of the domain, as well as persistence theory. Additionally, we aim to extend the concept of saliency maps [1][2], used in 2D image analysis, to the 3D context. We will investigate the use
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-resolution live-cell imaging and quantitative microscopy to dissect these mechanisms at the molecular level. We are offering a 6-month full-time internship for a highly motivated second-year Master’s student
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-term contract (CDD) with a transition to a permanent professor position at the end of the fixed-term contract. Potential course subjects include cancer biology, cell signaling, molecular imaging, etc. as
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project and experimental deadlines set by the supervisors.•Report results during meetings and seminars.Profile:•Experience in tissue imaging.•Experience working with mice (injections and perfusion
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of data, especially heterogenous data made of several data types (continuous, texts, images, times series, networks, …). For example, social and communication networks allow users to interact through text
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the model to be trained. Access to this imaging has already been anticipated through the Health Data Warehouse (AAP Entrepôt de Données de Santé EDS 2023) via the “FraCTures” project, allowing
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production of data, especially heterogenous data made of several data types (continuous, texts, images, times series, networks, …). For example, social and communication networks allow users to interact
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friction models. Integrating Experimental Data: Collaborate with experimental teams to incorporate data from calcium imaging, confocal microscopy, and high-resolution video recordings. Use experimental data
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: micromagnetic simulation, conversion of theoretical data into experimental contrast and acquisition of experimental images. The work will be carried out by three teams: theory/simulation, spin textures within