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). Our overall aim is to understand the molecular mechanisms of haematological cancers, and based on this; to design, develop and implement novel, scientifically based, clinical trials, with a strong focus
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integration, especially in molecular medicine; mathematical modelling of cancer; probabilistic modelling and Bayesian inference, stochastic algorithms and simulation-based inference; causal inference and time
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autophagic pathways. Using advanced imaging, cell biology, and biochemical approaches in human iPSC-derived astrocytes and neuronal models, the project will characterize the molecular mechanisms linking
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research project funded by the FIRST TEAM FENG programme of the Foundation for Polish Science, entitled: “An innovative dynamic_DCIS_device mimicking the dynamic architecture of invasion in ductal carcinoma
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Leibniz-Institut für Analytische Wissenschaften – ISAS – e.V. | Dortmund, Nordrhein Westfalen | Germany | about 2 months ago
from the project with data from literature (e.g., molecular pathways) using the knowledge graph Re-analysis of already published data Identification of microbial effectors from the knowledge graph Your
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full translational pipeline — from developing and optimizing cell enrichment and molecular profiling workflows, through single-cell characterization of circulating tumor-associated cell populations
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Alfred-Wegener-Institut Helmholtz-Zentrum für Polar- und Meeresforschung | Helgoland, Schleswig Holstein | Germany | 3 months ago
description:PhD position in “Molecular Microbial Ecology focusing on phage-host interactions” (x/d/f/m) Background Vibriosis is a persistent and escalating threat to aquaculture worldwide. Climate change
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research spans a wide range of topics, including experimental and theoretical molecular physics, the dynamics of complex systems, photonics, and quantum science. This PhD project lies at the interface
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assays, (iii) development of strategies to mechanically couple molecular motors, (iv) dynamic acquisition of motor-driven movement by high-resolution fluorescence microscopy and/or magnetic/optical
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understand how dynamic processes shape disease states at cellular and molecular scales. The project brings together expertise in artificial intelligence, computational RNA biology, and neuroscience. It is a