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processing, network resource management to improve the performance of the future wireless communication systems. Finally, due to the large-scale nature, complexity, and heterogeneity of 6G networks
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Experience with pathways and complex networks in cell biology Finally, applicants should: Be curious and ambitious Take pride in being a good colleague and scientist Who we are The laboratory is located
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or physiological role of Arp2/3 iso-complex driven actin polymerisation in Michael Way’s laboratory at the Francis Crick Institute. Click here to find out more about the Way Lab The Project Branched actin networks
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chromatin remodelling complexes, and benchmark their activities generate nucleosome positioning maps using sequencing-based readouts (e.g., MNase-seq, Fiber-seq) and perform quantitative data analysis
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. The work will use microorganisms as a starting base, as these are biologically relevant, yet complex and challenging to resolve spatially, provide an ideal benchmark for the method’s performance
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specializes in fluorescence and Raman-based approaches, integrating advanced microscopic analysis to gain molecular-level insights into complex materials and systems. The lab is internationally recognized
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) Experience working with primary fibroblasts, primary macrophages, organoids, or other complex cellular models We're especially interested in candidates with either: (1) expertise in ECM biology, fibrosis
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advanced statistical analysis, pathway & network analysis, Integrating complex clinical, biological and molecular data. Contributing to data visualization, figure generation and interpretation
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for therapeutic intervention. Initially focused on tools to study human protein complexes, the lab has expanded to novel screening platforms in human cells for applications such as Deep Mutational Scanning and
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develop transformative therapies for glioblastoma (GBM) by understanding the disease on its own biological terms, within the complex context of the human central nervous system. We are entering an exciting