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techniques have been developed to overcome this drawback. Among them we focus on fluctuation of fluorescent molecules methods as they don’t need any specific materiel or fluorophore. The super-resolved image
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reconstructing the super-resolved image is formalized as an inverse problem which is regularized by introducing suitable sparsity constraint. In our team, we have recently proposed both model-based and data-driven
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diverse non-model organisms, such as Asgard archaea and microbial eukaryotes, using a combination of cryoET, cryoEM and complementary imaging techniques. For examples of our work, see https
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immunity Immunometabolism and metabolic-immune crosstalk Advanced imaging of immune responses Systems immunology and integrative approaches Proposals that bridge immunology with other areas such as infection
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algorithms will be developed to extract discriminative and predictive features from a multimodal dataset consisting of digital histopathological images, lung CT images, clinical, genomics, and multiproteomics
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measurements by LiDAR and images. While images are dense 2D grids, point clouds made by LiDARs are sparse and unstructured. This difference gives rise to the central question of LiDAR-camera fusion, that is to
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bachelor programmes - Midwifery and radiographer/clinical imaging - are set to commence in September 2025. These programmes are organized by combining theoretical training as well as simulations using
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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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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