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Differential gene and transcript expression analysis of RNA-seq experiments with TopHat and Cufflinks

, , , , , , , , , and . Nat. Protocols, 7 (3): 562--578 (March 2012)

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High-throughput sequence alignment using Graphics Processing Units., , , and . BMC Bioinform., (2007)Optimizing data intensive GPGPU computations for DNA sequence alignment., and . Parallel Comput., 35 (8-9): 429-440 (2009)TopHat: discovering splice junctions with RNA-Seq., , and . Bioinform., 25 (9): 1105-1111 (2009)TopHat2: accurate alignment of transcriptomes in the presence of insertions, deletions and gene fusions., , , , , and . Genome Biol, 14 (4): R36 (April 2013)How to Map Billions of Short Reads onto Genomes, and . Nat Biotech, 27 (5): 455--457 (May 2009)Differential gene and transcript expression analysis of RNA-seq experiments with TopHat and Cufflinks, , , , , , , , , and . Nat. Protocols, 7 (3): 562--578 (March 2012)Differential analysis of gene regulation at transcript resolution with RNA-seq, , , , , and . Nat Biotech, 31 (1): 46--53 (January 2013)The dynamics and regulators of cell fate decisions are revealed by pseudotemporal ordering of single cells., , , , , , , , , and . Nat Biotechnol, 32 (4): 381--386 (April 2014)Computational methods for transcriptome annotation and quantification using RNA-seq, , , and . Nature Methods, 8 (6): 469--477 (2011)The human body at cellular resolution: the NIH Human Biomolecular Atlas Program., , , , , , , , , and 114 other author(s). Nat., 574 (7777): 187-192 (2019)