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neurons. The Research Assistant will contribute to running functional cellular assays, as well as molecular biology laboratory work, including flow cytometry, RNA-sequencing analysis by next generation
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expertise in organoid models of neurodevelopment to join our team and be involved in a MRC funded project aimed at generating region-specific brain organoids and assembloids from multiple gene-edited human
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within King’s Health Partners and external clients. There will also be a strong focus in this role on the development of protocols for next-generation sequencing of respiratory virus genomes using Oxford
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learning architectures including generative models, particularly for sequence or structural data (e.g. transformers, graph neural networks, diffusion models) Proved experience in working independently and as
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, including next generation sequencing is essential. The successful candidate will be highly motivated and enthusiastic with an outstanding academic track record, good communication skills and the ability
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(e.g. nanopore-based sequencing, reverse genetics, immunoblotting, luciferase-based assays, RT-qPCR, microscopy) to study virus evolution and innate/adaptive immunity in the context of viral infection
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for sequence or structural data (e.g. transformers, graph neural networks) Proved experience in working independently and as part of a multidisciplinary team Evidence of strong communication and scientific
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will be required to take a leading role across multiple projects, with support from other members of the team. Project topics are agreed with the funders in accordance with their priorities. KIS is a KHP
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sequencing datasets Desirable criteria Background in mammalian cerebral cortex development 2Background in epigenetic regulators XXXX Downloading a copy of our Job Description Full details of the role and the
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approaches, advanced microscopy and immunological assays on fresh human tissue samples to phenotype and functionally characterise cell populations. Experience in advanced sequencing and omics analysis is