Engeszer RE, Patterson LB, Rao AA, Parichy DM (2007). "Zebrafish in the wild: a review of natural history and new notes from the field". Zebrafish. 4 (1): 21–40. doi:10.1089/zeb.2006.9997. PMID18041940. S2CID34342799.
Spence R, Fatema MK, Reichard M, Huq KA, Wahab MA, Ahmed ZF, Smith C (2006). "The distribution and habitat preferences of the zebrafish in Bangladesh". Journal of Fish Biology. 69 (5): 1435–1448. Bibcode:2006JFBio..69.1435S. doi:10.1111/j.1095-8649.2006.01206.x.
Gerhard GS, Kauffman EJ, Wang X, Stewart R, Moore JL, Kasales CJ, et al. (2002). "Life spans and senescent phenotypes in two strains of Zebrafish (Danio rerio)". Experimental Gerontology. 37 (8–9): 1055–1068. doi:10.1016/s0531-5565(02)00088-8. PMID12213556. S2CID25092240.
Hamilton TJ, Myggland A, Duperreault E, May Z, Gallup J, Powell RA, et al. (November 2016). "Episodic-like memory in zebrafish". Animal Cognition. 19 (6): 1071–1079. doi:10.1007/s10071-016-1014-1. PMID27421709. S2CID2552608.
Selman K, Wallace RA, Sarka A, Qi X (November 1993). "Stages of oocyte development in the zebrafish, Brachydanio rerio". Journal of Morphology. 218 (2): 203–224. doi:10.1002/jmor.1052180209. PMID29865471. S2CID46930941.
Kimmel CB, Law RD (March 1985). "Cell lineage of zebrafish blastomeres. I. Cleavage pattern and cytoplasmic bridges between cells". Developmental Biology. 108 (1): 78–85. doi:10.1016/0012-1606(85)90010-7. PMID3972182.
Kimmel CB, Law RD (March 1985). "Cell lineage of zebrafish blastomeres. III. Clonal analyses of the blastula and gastrula stages". Developmental Biology. 108 (1): 94–101. doi:10.1016/0012-1606(85)90012-0. PMID3972184.
Herath HM, et al. (2024). "Innovative transgenic zebrafish biosensor for heavy metal detection". Environmental Pollution: 125547. doi:10.1016/j.envpol.2024.125547.
Brannen KC, Panzica-Kelly JM, Danberry TL, Augustine-Rauch KA (February 2010). "Development of a zebrafish embryo teratogenicity assay and quantitative prediction model". Birth Defects Research Part B: Developmental and Reproductive Toxicology. 89 (1): 66–77. doi:10.1002/bdrb.20223. PMID20166227.
MacRae CA, Peterson RT (October 2015). "Zebrafish as tools for drug discovery". Nature Reviews. Drug Discovery. 14 (10): 721–731. doi:10.1038/nrd4627. PMID26361349. S2CID1979653.
Drummond IA (February 2005). "Kidney development and disease in the zebrafish". Journal of the American Society of Nephrology. 16 (2): 299–304. doi:10.1681/ASN.2004090754. PMID15647335. S2CID25428361.
Novoa B, Figueras A (2012-01-01). "Zebrafish: Model for the Study of Inflammation and the Innate Immune Response to Infectious Diseases". In Lambris JD, Hajishengallis G (eds.). Current Topics in Innate Immunity II. Advances in Experimental Medicine and Biology. Vol. 946. Springer New York. pp. 253–275. doi:10.1007/978-1-4614-0106-3_15. hdl:10261/44975. ISBN978-1-4614-0105-6. PMID21948373. S2CID6914876.
Meeker ND, Trede NS (2008). "Immunology and zebrafish: spawning new models of human disease". Developmental and Comparative Immunology. 32 (7): 745–757. doi:10.1016/j.dci.2007.11.011. PMID18222541.
Levraud JP, Palha N, Langevin C, Boudinot P (September 2014). "Through the looking glass: witnessing host-virus interplay in zebrafish". Trends in Microbiology. 22 (9): 490–497. doi:10.1016/j.tim.2014.04.014. PMID24865811.
Ramakrishnan L (2013). "Looking within the Zebrafish to Understand the Tuberculous Granuloma". The New Paradigm of Immunity to Tuberculosis. Advances in Experimental Medicine and Biology. Vol. 783. pp. 251–66. doi:10.1007/978-1-4614-6111-1_13. ISBN978-1-4614-6110-4. PMID23468113.
Witten PE, Hansen A, Hall BK (December 2001). "Features of mono- and multinucleated bone resorbing cells of the zebrafish Danio rerio and their contribution to skeletal development, remodeling, and growth". Journal of Morphology. 250 (3): 197–207. doi:10.1002/jmor.1065. PMID11746460. S2CID33403358.
Novoa B, Figueras A (2012-01-01). "Zebrafish: Model for the Study of Inflammation and the Innate Immune Response to Infectious Diseases". In Lambris JD, Hajishengallis G (eds.). Current Topics in Innate Immunity II. Advances in Experimental Medicine and Biology. Vol. 946. Springer New York. pp. 253–275. doi:10.1007/978-1-4614-0106-3_15. hdl:10261/44975. ISBN978-1-4614-0105-6. PMID21948373. S2CID6914876.
Spence R, Fatema MK, Reichard M, Huq KA, Wahab MA, Ahmed ZF, Smith C (2006). "The distribution and habitat preferences of the zebrafish in Bangladesh". Journal of Fish Biology. 69 (5): 1435–1448. Bibcode:2006JFBio..69.1435S. doi:10.1111/j.1095-8649.2006.01206.x.
Engeszer RE, Patterson LB, Rao AA, Parichy DM (2007). "Zebrafish in the wild: a review of natural history and new notes from the field". Zebrafish. 4 (1): 21–40. doi:10.1089/zeb.2006.9997. PMID18041940. S2CID34342799.
Gerhard GS, Kauffman EJ, Wang X, Stewart R, Moore JL, Kasales CJ, et al. (2002). "Life spans and senescent phenotypes in two strains of Zebrafish (Danio rerio)". Experimental Gerontology. 37 (8–9): 1055–1068. doi:10.1016/s0531-5565(02)00088-8. PMID12213556. S2CID25092240.
Hamilton TJ, Myggland A, Duperreault E, May Z, Gallup J, Powell RA, et al. (November 2016). "Episodic-like memory in zebrafish". Animal Cognition. 19 (6): 1071–1079. doi:10.1007/s10071-016-1014-1. PMID27421709. S2CID2552608.
Selman K, Wallace RA, Sarka A, Qi X (November 1993). "Stages of oocyte development in the zebrafish, Brachydanio rerio". Journal of Morphology. 218 (2): 203–224. doi:10.1002/jmor.1052180209. PMID29865471. S2CID46930941.
Kimmel CB, Law RD (March 1985). "Cell lineage of zebrafish blastomeres. I. Cleavage pattern and cytoplasmic bridges between cells". Developmental Biology. 108 (1): 78–85. doi:10.1016/0012-1606(85)90010-7. PMID3972182.
Kimmel CB, Law RD (March 1985). "Cell lineage of zebrafish blastomeres. III. Clonal analyses of the blastula and gastrula stages". Developmental Biology. 108 (1): 94–101. doi:10.1016/0012-1606(85)90012-0. PMID3972184.
Brannen KC, Panzica-Kelly JM, Danberry TL, Augustine-Rauch KA (February 2010). "Development of a zebrafish embryo teratogenicity assay and quantitative prediction model". Birth Defects Research Part B: Developmental and Reproductive Toxicology. 89 (1): 66–77. doi:10.1002/bdrb.20223. PMID20166227.
MacRae CA, Peterson RT (October 2015). "Zebrafish as tools for drug discovery". Nature Reviews. Drug Discovery. 14 (10): 721–731. doi:10.1038/nrd4627. PMID26361349. S2CID1979653.
Drummond IA (February 2005). "Kidney development and disease in the zebrafish". Journal of the American Society of Nephrology. 16 (2): 299–304. doi:10.1681/ASN.2004090754. PMID15647335. S2CID25428361.
Novoa B, Figueras A (2012-01-01). "Zebrafish: Model for the Study of Inflammation and the Innate Immune Response to Infectious Diseases". In Lambris JD, Hajishengallis G (eds.). Current Topics in Innate Immunity II. Advances in Experimental Medicine and Biology. Vol. 946. Springer New York. pp. 253–275. doi:10.1007/978-1-4614-0106-3_15. hdl:10261/44975. ISBN978-1-4614-0105-6. PMID21948373. S2CID6914876.
Meeker ND, Trede NS (2008). "Immunology and zebrafish: spawning new models of human disease". Developmental and Comparative Immunology. 32 (7): 745–757. doi:10.1016/j.dci.2007.11.011. PMID18222541.
Levraud JP, Palha N, Langevin C, Boudinot P (September 2014). "Through the looking glass: witnessing host-virus interplay in zebrafish". Trends in Microbiology. 22 (9): 490–497. doi:10.1016/j.tim.2014.04.014. PMID24865811.
Ramakrishnan L (2013). "Looking within the Zebrafish to Understand the Tuberculous Granuloma". The New Paradigm of Immunity to Tuberculosis. Advances in Experimental Medicine and Biology. Vol. 783. pp. 251–66. doi:10.1007/978-1-4614-6111-1_13. ISBN978-1-4614-6110-4. PMID23468113.
Witten PE, Hansen A, Hall BK (December 2001). "Features of mono- and multinucleated bone resorbing cells of the zebrafish Danio rerio and their contribution to skeletal development, remodeling, and growth". Journal of Morphology. 250 (3): 197–207. doi:10.1002/jmor.1065. PMID11746460. S2CID33403358.
Engeszer RE, Patterson LB, Rao AA, Parichy DM (2007). "Zebrafish in the wild: a review of natural history and new notes from the field". Zebrafish. 4 (1): 21–40. doi:10.1089/zeb.2006.9997. PMID18041940. S2CID34342799.
Gerhard GS, Kauffman EJ, Wang X, Stewart R, Moore JL, Kasales CJ, et al. (2002). "Life spans and senescent phenotypes in two strains of Zebrafish (Danio rerio)". Experimental Gerontology. 37 (8–9): 1055–1068. doi:10.1016/s0531-5565(02)00088-8. PMID12213556. S2CID25092240.
Hamilton TJ, Myggland A, Duperreault E, May Z, Gallup J, Powell RA, et al. (November 2016). "Episodic-like memory in zebrafish". Animal Cognition. 19 (6): 1071–1079. doi:10.1007/s10071-016-1014-1. PMID27421709. S2CID2552608.
Selman K, Wallace RA, Sarka A, Qi X (November 1993). "Stages of oocyte development in the zebrafish, Brachydanio rerio". Journal of Morphology. 218 (2): 203–224. doi:10.1002/jmor.1052180209. PMID29865471. S2CID46930941.
MacRae CA, Peterson RT (October 2015). "Zebrafish as tools for drug discovery". Nature Reviews. Drug Discovery. 14 (10): 721–731. doi:10.1038/nrd4627. PMID26361349. S2CID1979653.
Drummond IA (February 2005). "Kidney development and disease in the zebrafish". Journal of the American Society of Nephrology. 16 (2): 299–304. doi:10.1681/ASN.2004090754. PMID15647335. S2CID25428361.
Novoa B, Figueras A (2012-01-01). "Zebrafish: Model for the Study of Inflammation and the Innate Immune Response to Infectious Diseases". In Lambris JD, Hajishengallis G (eds.). Current Topics in Innate Immunity II. Advances in Experimental Medicine and Biology. Vol. 946. Springer New York. pp. 253–275. doi:10.1007/978-1-4614-0106-3_15. hdl:10261/44975. ISBN978-1-4614-0105-6. PMID21948373. S2CID6914876.
Witten PE, Hansen A, Hall BK (December 2001). "Features of mono- and multinucleated bone resorbing cells of the zebrafish Danio rerio and their contribution to skeletal development, remodeling, and growth". Journal of Morphology. 250 (3): 197–207. doi:10.1002/jmor.1065. PMID11746460. S2CID33403358.
de Vrieze E, van Kessel MA, Peters HM, Spanings FA, Flik G, Metz JR (February 2014). "Prednisolone induces osteoporosis-like phenotype in regenerating zebrafish scales". Osteoporosis International. 25 (2): 567–578. doi:10.1007/s00198-013-2441-3. PMID23903952. S2CID21829206.