I.J. Nijman
I.J. Nijman
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Cited by
Cited by
Organoid models of human and mouse ductal pancreatic cancer
SF Boj, CI Hwang, LA Baker, IIC Chio, DD Engle, V Corbo, M Jager, ...
Cell 160 (1), 324-338, 2015
Sambamba: fast processing of NGS alignment formats
A Tarasov, AJ Vilella, E Cuppen, IJ Nijman, P Prins
Bioinformatics 31 (12), 2032-2034, 2015
A living biobank of breast cancer organoids captures disease heterogeneity
N Sachs, J De Ligt, O Kopper, E Gogola, G Bounova, F Weeber, ...
Cell 172 (1), 373-386. e10, 2018
Tissue-specific mutation accumulation in human adult stem cells during life
F Blokzijl, J De Ligt, M Jager, V Sasselli, S Roerink, N Sasaki, M Huch, ...
Nature 538 (7624), 260-264, 2016
Whole-genome sequence variation, population structure and demographic history of the Dutch population
Nature genetics 46 (8), 818-825, 2014
A systematic genome-wide analysis of zebrafish protein-coding gene function
RNW Kettleborough, EM Busch-Nentwich, SA Harvey, CM Dooley, ...
Nature 496 (7446), 494-497, 2013
A medium-density genetic linkage map of the bovine genome
W Barendse, D Vaiman, SJ Kemp, Y Sugimoto, SM Armitage, JL Williams, ...
Mammalian Genome 8, 21-28, 1997
Llama heavy-chain V regions consist of at least four distinct subfamilies revealing novel sequence features
MM Harmsen, RC Ruuls, IJ Nijman, TA Niewold, LGJ Frenken, B de Geus
Molecular immunology 37 (10), 579-590, 2000
Genome-wide pattern of TCF7L2/TCF4 chromatin occupancy in colorectal cancer cells
P Hatzis, LG van der Flier, MA van Driel, V Guryev, F Nielsen, S Denissov, ...
Molecular and cellular biology, 2008
Pyrosequencing-based comparative genome analysis of the nosocomial pathogen Enterococcus faecium and identification of a large transferable pathogenicity …
W van Schaik, J Top, DR Riley, J Boekhorst, JEP Vrijenhoek, ...
BMC genomics 11, 1-18, 2010
Dominant missense mutations in ABCC9 cause Cantú syndrome
M Harakalova, JJT Van Harssel, PA Terhal, S Van Lieshout, K Duran, ...
Nature genetics 44 (7), 793-796, 2012
Chromothripsis is a common mechanism driving genomic rearrangements in primary and metastatic colorectal cancer
WP Kloosterman, M Hoogstraat, O Paling, M Tavakoli-Yaraki, I Renkens, ...
Genome biology 12, 1-11, 2011
Maternal and paternal lineages in cross-breeding bovine species. Has wisent a hybrid origin?
ELC Verkaar, IJ Nijman, M Beeke, E Hanekamp, JA Lenstra
Molecular biology and evolution 21 (7), 1165-1170, 2004
Hybridization of banteng (Bos javanicus) and zebu (Bos indicus) revealed by mitochondrial DNA, satellite DNA, AFLP and microsatellites
IJ Nijman, M Otsen, ELC Verkaar, C De Ruijter, E Hanekamp, JW Ochieng, ...
Heredity 90 (1), 10-16, 2003
Effectiveness of whole-exome sequencing and costs of the traditional diagnostic trajectory in children with intellectual disability
GR Monroe, GW Frederix, S Savelberg, TI De Vries, KJ Duran, ...
Genetics in Medicine 18 (9), 949-956, 2016
Targeted next-generation sequencing: a novel diagnostic tool for primary immunodeficiencies
IJ Nijman, JM van Montfrans, M Hoogstraat, ML Boes, L van de Corput, ...
Journal of Allergy and Clinical Immunology 133 (2), 529-534. e1, 2014
Loss of syntaxin 3 causes variant microvillus inclusion disease
CL Wiegerinck, AR Janecke, K Schneeberger, GF Vogel, ...
Gastroenterology 147 (1), 65-68. e10, 2014
Primary colorectal cancers and their subsequent hepatic metastases are genetically different: implications for selection of patients for targeted treatment
JS Vermaat, IJ Nijman, MJ Koudijs, FL Gerritse, SJ Scherer, M Mokry, ...
Clinical cancer research 18 (3), 688-699, 2012
Phylogeny of bovine species based on AFLP fingerprinting
JB Buntjer, M Otsen, IJ Nijman, MTR Kuiper, JA Lenstra
Heredity 88 (1), 46-51, 2002
Differentiation of cattle species in beef by PCR-RFLP of mitochondrial and satellite DNA
ELC Verkaar, IJ Nijman, K Boutaga, JA Lenstra
Meat Science 60 (4), 365-369, 2002
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