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sequencing, high-resolution microscopy imaging, and data science methods. The second project focuses on providing service packages for single-cell and spatial omics research, as well as multimodal data
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reconstitution, cell biology, and fluorescence microscopy imaging tools, we aim to uncover how protein-membrane interactions promote membrane microdomain formation and how these structures respond to external
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structural biology, biochemistry, in vitro reconstitution, cell biology, and fluorescence microscopy imaging tools, we aim to uncover how protein-membrane interactions promote membrane microdomain formation
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, funded by the Research Council of Finland, synergizes modern computational methods for analyzing large histological image volumes, new magnetic resonance imaging techniques, and statistical physics
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, and fluorescence microscopy imaging tools, we aim to uncover how protein-membrane interactions promote membrane microdomain formation and how these structures respond to external stress. We want
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of Advanced Mathematics for Sensing, Imaging and Modelling (2024–2031). The group is also supported by a Research Council of Finland Fellowship under the project SPARSe (2025–2029), further strengthening its
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models using sophisticate genetic tools, in vivo time-lapse imaging and multi-omics methods to decipher the underpinning mechanisms of regeneration. Our findings provide new targetable mechanisms
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reconstitution, cell biology, and fluorescence microscopy imaging tools, we aim to uncover how protein-membrane interactions promote membrane microdomain formation and how these structures respond to external
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of soil amendments on soil structure using X-ray tomography and image analysis. The position starts on November 1, 2025, or as soon as possible thereafter, for a fixed term of up to four years. The doctoral
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settings. Using advanced compressed sensing techniques and machine learning methods, PulseZTE will make it possible to image neural activations and vascular pulsations simultaneously. It will also enable