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Resources (41)

mosquito HV genomics

Webinar: automated low-volume liquid handling for cost-effective NGS library preparation and single cell genomics

High throughput transcriptomics

Wimmers, F., et. al. (2018) Single-cell analysis reveals that stochasticity and paracrine signaling control interferon-alpha production by plasmacytoid dendritic cells. Nature Communications 9. doi:10.1038/s41467-018-05784-3

mosquito HV genomics

Tutorial: miniaturization and automation of single-cell RNA-seq library preparation at UCSD

mosquito X1

Zanini, et al. (2018). Single-cell transcriptional dynamics of flavivirus infection. eLife 2018;7:e32942

High throughput transcriptomics

Miniaturization and automation of CEL-Seq2 and SMARTer-Seq using the mosquito liquid handler

High throughput transcriptomics

Herman, J., et. al. (2018) FateID infers cell fate bias in multipotent progenitors from single-cell RNA-seq data. Nature methods. doi:10.1038/nmeth.4662

High throughput transcriptomics

Herrtwich, L., et. al. (2016) DNA Damage Signaling Instructs Polyploid Macrophage Fate in Granulomas. Cell , Volume 167, Issue 5, 1264 - 1280.e18

High throughput transcriptomics

Herman, J., et. al. (2018) FateID infers cell fate bias in multipotent progenitors from single-cell RNA-seq data. Nature methods. doi:10.1038/nmeth.4662 (Supplementary Text and Figures)

High throughput transcriptomics

Sagar, et al. (2018) High-Throughput Single-Cell RNA Sequencing and Data Analysis. In: Vavouri T., Peinado M. (eds) CpG Islands. Methods in Molecular Biology, vol 1766.

mosquito HV genomics

Miniaturization of Illumina Library Preparation in a Shared Facility Setting

mosquito X1

Gasch, A., et al (2017) Single-cell RNA-seq reveals intrinsic and extrinsic regulatory heterogeneity in yeast responding to stress

RNA storage, DNA storage, Bioparts & bioblock storage, Glycerol stock storage

Automated high-density sample storage and miniaturised liquid handling for high-throughput synthetic biology construct assembly

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