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cloud or distributed computing environments. Familiarity with self-supervised and contrastive learning techniques for aligning text and images (e.g., CLIP, SimCLR). Clinical experience, e.g., interaction
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host of actin-binding proteins (ABPs) modulate the growth and stability of individual filaments or organise multiple filaments into various bundled and branched networks. This role will focus on a family
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to understand how striated muscle is regulated during health, disease and stress-response contexts. The successful candidate will lead computational lab analysis work across multiple projects, largely focussing
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candidate will lead computational lab analysis work across multiple projects, largely focussing on the perturbation of skeletal muscle cells (myofibres) during periods of environmental and/or genetic
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lab working on aligned projects. The post would suit somebody with solid experience of working with small rodents, mouse cochlear dissection and a strong interest in auditory neuroscience. Expertise in
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various mouse models we currently have running in the lab. There will also be good opportunity to collaborate with other members of the Nolan lab working on aligned projects. The post would suit somebody
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the growth and stability of individual filaments or organise multiple filaments into various bundled and branched networks. This role will focus on a family of actin-binding proteins that regulates the actin
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recognised by over 100 research awards, and multiple members of staff have been named by Web of Science as amongst the leading researchers in the world in psychiatry/ neuroscience. We have many research
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expertise. Their research has been recognised by over 100 research awards, and multiple members of staff have been named by Web of Science as amongst the leading researchers in the world in psychiatry
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apply a novel single muscle cell (myofiber) omic platform — developed by the PI — to interrogate ALS pathogenesis at an unprecedented level of resolution. By simultaneously analysing multiple data sets