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Spence, Rowena; Gerlach, Gabriele; Lawrence, Christian; Smith, Carl (2007). "The behaviour and ecology of the zebrafish, Danio rerio". Biological Reviews83 (1): 13–34. PMID18093234. doi:10.1111/j.1469-185X.2007.00030.x.
Bernardos, Rebecca L.; Barthel, Linda K.; Meyers, Jason R.; Raymond, Pamela A. (2007). "Late-Stage Neuronal Progenitors in the Retina Are Radial Muller Glia That Function as Retinal Stem Cells". Journal of Neuroscience27 (26): 7028–40. PMID17596452. doi:10.1523/JNEUROSCI.1624-07.2007.
Kimmel, Charles B.; Law, Robert D. (1985). "Cell lineage of zebrafish blastomeres". Developmental Biology108 (1): 94–101. PMID3972184. doi:10.1016/0012-1606(85)90012-0.
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Spaink HP, Cui C, Wiweger MI, Jansen HJ, Veneman WJ, Marín-Juez R, de Sonneville J, Ordas A, Torraca V, van der Ent W, Leenders WP, Meijer AH, Snaar-Jagalska BE, Dirks RP. "Robotic injection of zebrafish embryos for high-throughput screening in disease models." Methods. 2013 Aug 15;62(3):246-54. doi: 10.1016/j.ymeth.2013.06.002 [9]. Epub 2013 Jun 11. PMID 23769806
Lawrence, Jean M.; Singhal, Shweta; Bhatia, Bhairavi; Keegan, David J.; Reh, Thomas A.; Luthert, Philip J.; Khaw, Peng T.; Limb, Gloria Astrid (Agosto de 2007). "MIO-M1 Cells and Similar Müller Glial Cell Lines Derived from Adult Human Retina Exhibit Neural Stem Cell Characteristics". Stem Cells25 (8): 2033–43. PMID17525239. doi:10.1634/stemcells.2006-0724. Resumo divulgativo – The China Post (August 3, 2007).
Brannen, Kimberly C.; Panzica-Kelly, Julieta M.; Danberry, Tracy L.; Augustine-Rauch, Karen A. (2010). "Development of a zebrafish embryo teratogenicity assay and quantitative prediction model". Birth Defects Research Part B: Developmental and Reproductive Toxicology89 (1): 66–77. PMID20166227. doi:10.1002/bdrb.20223.
Lawrence, Jean M.; Singhal, Shweta; Bhatia, Bhairavi; Keegan, David J.; Reh, Thomas A.; Luthert, Philip J.; Khaw, Peng T.; Limb, Gloria Astrid (Agosto de 2007). "MIO-M1 Cells and Similar Müller Glial Cell Lines Derived from Adult Human Retina Exhibit Neural Stem Cell Characteristics". Stem Cells25 (8): 2033–43. PMID17525239. doi:10.1634/stemcells.2006-0724. Resumo divulgativo – The China Post (August 3, 2007).
Meeker, Nathan D.; Trede Nikolaus S. (2008). "Immunology and zebrafish: spawning new models of human disease". Dev Comp Immunol 32: 745–757. doi: 10.1016/j.dci.2007.11.011 [2]. PMID 18222541
Spaink HP, Cui C, Wiweger MI, Jansen HJ, Veneman WJ, Marín-Juez R, de Sonneville J, Ordas A, Torraca V, van der Ent W, Leenders WP, Meijer AH, Snaar-Jagalska BE, Dirks RP. "Robotic injection of zebrafish embryos for high-throughput screening in disease models." Methods. 2013 Aug 15;62(3):246-54. doi: 10.1016/j.ymeth.2013.06.002 [9]. Epub 2013 Jun 11. PMID 23769806
springer.com
link.springer.com
Ramakrishnan L. (2013). "Looking within the zebrafish to understand the tuberculous granuloma." Adv Exp Med Biol. 2013;783:251-66. doi: 10.1007/978-1-4614-6111-1_13 [8]. PMID 23468113
Meijer AH, van der Vaart M, Spaink HP. (2014). "Real-time imaging and genetic dissection of host-microbe interactions in zebrafish." Cell Microbiol. 2013 Nov 5. doi: 10.1111/cmi.12236 [7]. PMID 24188444