New Results
Accurate analysis of genuine CRISPR editing events with ampliCan
Kornel Labun, Xiaoge Guo, Alejandro Chavez, George Church, James Gagnon, View ORCID ProfileEivind Valen
doi: https://doi.org/10.1101/249474
Kornel Labun
1Department of Informatics/Computational Biology Unit; University of Bergen; Bergen, 5008; Norway
Xiaoge Guo
2Wyss Institute for Biologically Inspired Engineering; Harvard University; Cambridge, MA 02115; USA
3Department of Genetics; Harvard Medical School; Boston, Massachusetts, 02115; USA
Alejandro Chavez
4Department of Pathology and Cell Biology; Columbia University; New York, NY 10032; USA
George Church
2Wyss Institute for Biologically Inspired Engineering; Harvard University; Cambridge, MA 02115; USA
3Department of Genetics; Harvard Medical School; Boston, Massachusetts, 02115; USA
James Gagnon
5Department of Biology; University of Utah; Salt Lake City, UT 84112; USA
Eivind Valen
1Department of Informatics/Computational Biology Unit; University of Bergen; Bergen, 5008; Norway
6Sars International Centre for Marine Molecular Biology; University of Bergen; Bergen, 5008; Norway

Article usage
Posted September 15, 2018.
Accurate analysis of genuine CRISPR editing events with ampliCan
Kornel Labun, Xiaoge Guo, Alejandro Chavez, George Church, James Gagnon, Eivind Valen
bioRxiv 249474; doi: https://doi.org/10.1101/249474
Subject Area
Subject Areas
- Biochemistry
- Biochemistry (14219)
- Bioengineering (10852)
- Bioinformatics (34367)
- Biophysics (17693)
- Cancer Biology (14783)
- Cell Biology (20841)
- Clinical Trials (138)
- Developmental Biology (11215)
- Ecology (16529)
- Epidemiology (2067)
- Evolutionary Biology (20843)
- Genetics (13702)
- Genomics (19130)
- Immunology (14277)
- Microbiology (33252)
- Molecular Biology (13872)
- Neuroscience (72582)
- Paleontology (544)
- Pathology (2283)
- Pharmacology and Toxicology (3869)
- Physiology (6122)
- Plant Biology (12424)
- Synthetic Biology (3469)
- Systems Biology (8384)
- Zoology (1917)