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Field
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. The successful candidate will work on an exciting research project at the interface of developmental neurobiology and circuits neuroscience. They will integrate in-vivo whole cell recordings during postnatal
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, we are developing innovative platform technologies that combine the design and synthesis of modified ONs with advanced targeting strategies and applications in lung cancer, B-cell malignancies, and
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genetically modified mouse models. Experience with spectral flow cytometry is essential. Experience with cell sorting, preparation of tissues for RNAseq and confocal microscopy analysis is highly desirable
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bioinformatics analysis pipelines for processing RNA-seq, single-cell RNA-seq, genomics and proteomics data. Develop novel algorithms and integrated data visualization applications when existing software packages
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PhD, and benefits can be found at https://postdoc.hms.harvard.edu/guidelines . With this appointment, you are represented by the Harvard Academic Workers (HAW) – UAW for purposes of collective
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Are you passionate about developing advanced polymeric materials for electrochemical energy storage and conversion, including batteries, fuel cells, and electrolyzers, to contribute
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who want to return to research after a career break of at least two years to carry out research focused on understanding the mechanisms that regulate cancer cell proliferation, survival and
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responding to antibiotics. The project will investigate how complex interactions of the drug with the cell's physiology results in non-genetic variation in single-cell growth and gene expression, leading
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side of early-life microbiome research. Relevant interests and experience may include: Microbiome sample collection, processing, or wet-lab workflows Cell biology, organoids, gut-on-a-chip systems
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science. The candidates must possess detailed knowledge and experience in miniature electrochemical sensor design, fabrication and testing. We are looking for a self-motivated person, able to organise their own research