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Field
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models, including 2D and 3D cell models, to assess the activity, biocompatibility and accumulation of nanomaterials; • participating in interdisciplinary research conducted by the project team; • analysing
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cells in structured 2D and 3D environments. Instead of treating artificial/synthetic cells as isolated mimics of life, ProtoEco will develop biohybrid micro-communities that exchange metabolites, energy
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to developing patient-derived bladder cancer organoid (PDO) models and integrating genomic and transcriptomic profiling to advance personalized medicine in bladder cancer. This lab will serve as a cornerstone for
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I supervise a wide range of projects stellar astronomy. They include modelling stars in 1D or 3D, deciphering the origin of the elements (stellar nucleosynthesis), and observing using optical
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with simulated data and 2D and 3D imaging data of plant tissues (the thale cress Arabidopsis and the aquatic fern Ceratopteris). At a later stage, the models can be extended to three dimensions using
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effects, such as 2D/3D propagation and beam speckle patterns, which remain largely unexplored because they require significant simulation capabilities. This thesis aims to conduct a systematic kinetic
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Leibniz-Institut für Analytische Wissenschaften – ISAS – e.V. | Dortmund, Nordrhein Westfalen | Germany | 3 months ago
Developing computational framework for 3D shape modeling towards biological insights Developing AI-based representation learning framework for data-driven cell modeling Report findings and methods in
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the deadline. The project topic is flexible and will be developed jointly by the student and the supervisor, depending on the candidate’s background and research interests. Possible directions include 3D body
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(questionnaires, biometrics, …) categorize specific sets of tasks and environments to investigate decide on the form factor and appearances of robots to investigate and build prototypes / 3D models for them using
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student-scholarship holder at the Poznan Doctoral School of Institutes of Polish Academy of Sciences
of Sciences in Poznań receives funding from the OPUS LAP 30 (2025/59/I/NZ2/02573) titled “Hypoxia-Driven Metastatic Potential in NSCLC: Multi-Modal Transcriptomic Profiling in 3D and Orthotopic Models” to fund