Resource Centre
Publication )
Long-read spatial transcriptomics of patient-derived ccRCC organoids identifies heterogeneity and transcriptional remodelling following treatment
Publication )
Transcriptome-wide profiling of alternative splicing regulators with CRISPore-seq
Publication )
Single-cell long-read whole-genome sequencing reveals somatic transposon activity in human brain
Publication )
Decoding the human PBMC isonome: isoform-level resolution with single-cell long-read transcriptomics
Publication )
Long-read single-cell genome, transcriptome and open chromatin profiling links genotype to phenotypes
Publication )
A single-cell, long-read, isoform-resolved case-control study of FTD reveals cell-type-specific and broad splicing dysregulation in human brain
Case study )
Case study: unravelling tumour biology with single-cell Oxford Nanopore sequencing
Publication )
Systematic characterisation of full-length RNA isoforms in human colorectal cancer at single-cell resolution
Publication )
Single-cell and spatial alternative splicing analysis with nanopore long-read sequencing
Publication )
DeepNanoHi-C: deep learning enables accurate single-cell nanopore long-read data analysis and 3D genome interpretation
Publication )
Spatial isoform sequencing at sub-micrometer single-cell resolution reveals novel patterns of spatial isoform variability in brain cell types
Publication )
Cell-specific RNA isoform remodelling in the ageing mouse brain
Poster )
Single-cell transcriptomics with full-length cDNA sequencing provides unique insights into cellular diversity
Video )
Using long-read sequencing for translational health research
Video )
Single-cell transcriptome sequencing
Video )
Nanopore-based HLA testing: a rising star driving real-world clinical implementation in pharmacogenomics
Video )
Masterclass: How to select the right library prep workflow for your experiment | LC25
Video )
Masterclass: How to analyse your Oxford Nanopore sequencing data | LC25
Video )
Going the extra mile to understand chronic lymphocytic leukaemia
Video )
Blessy: enabling differential analysis of phased protein domains