Cromatóforo (Spanish Wikipedia)

Analysis of information sources in references of the Wikipedia article "Cromatóforo" in Spanish language version.

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archive.today

doi.org

dx.doi.org

imageshack.us

img46.imageshack.us

jcb.org

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  • Deacon SW et al. Dynactin is required for bidirectional organelle transport. J Cell Biol. 2003; 160:297-301. PMID 12551954 Full text

nih.gov

ncbi.nlm.nih.gov

  • Bagnara JT. Cytology and cytophysiology of non-melanophore pigment cells. Int Rev Cytol. 1966; 20:173–205. PMID 5337298
  • Bagnara JT. Cytology and cytophysiology of non-melanophore pigment cells. Int Rev Cytol. 1966; 20:173–205. PMID 5337298
  • Matsumoto J. Studies on fine structure and cytochemical properties of erythrophores in swordtail, Xiphophorus helleri. J Cell Biol. 1965; 27:493–504. PMID 5885426
  • Taylor JD. The effects of intermedin on the ultrastructure of amphibian iridophores. Gen Comp Endocrinol. 1969; 12:405-16. PMID 5769930
  • Morrison RL. A transmission electron microscopic (TEM) method for determining structural colors reflected by lizard iridophores. Pigment Cell Res. 1995; 8:28–36. PMID 7792252
  • Fujii R. The regulation of motile activity in fish chromatophores. Pigment Cell Res. 2000; 13:300-19. PMID 11041206
  • Ito S & Wakamatsu K. Quantitative analysis of eumelanin and pheomelanin in humans, mice, and other animals: a comparative review. Pigment Cell Res. 2003; 16:523-31. PMID 12950732
  • Bagnara JT et al. Color changes, unusual melanosomes, and a new pigment from leaf frogs. Science. 1973; 182:1034–5. PMID 4748673
  • Schwalm PA et al. Infrared reflectance in leaf-sitting neotropical frogs. Science. 1977; 196:1225–7. PMID 860137
  • Bagnara JT et al. The dermal chromatophore unit. J Cell Biol. 1968; 38:67–79. PMID 5691979 Full text — PDF.
  • Palazzo RE et al. Rearrangements of pterinosomes and cytoskeleton accompanying pigment dispersion in goldfish xanthophores. Cell Motil Cytoskeleton. 1989; 13:9–20. PMID 2543509
  • Porras MG et al. Corazonin promotes tegumentary pigment migration in the crayfish Procambarus clarkii. Peptides. 2003; 24:1581–9. PMID 14706537
  • Deacon SW et al. Dynactin is required for bidirectional organelle transport. J Cell Biol. 2003; 160:297-301. PMID 12551954 Full text
  • Aspengren S et al. Noradrenaline- and melatonin-mediated regulation of pigment aggregation in fish melanophores. Pigment Cell Res. 2003; 16:59–64. PMID 12519126
  • Logan DW et al. Regulation of pigmentation in zebrafish melanophores. Pigment Cell Res. 2006; 19:206-13. PMID 16704454
  • Logan DW et al. Sequence characterization of teleost fish melanocortin receptors. Ann N Y Acad Sci. 2003; 994:319-30. PMID 12851332
  • Sugden D et al. Melatonin, melatonin receptors and melanophores: a moving story. Pigment Cell Res. 2004; 17:454-60. PMID 15357831
  • Logan DW et al. The structure and evolution of the melanocortin and MCH receptors in fish and mammals. Genomics. 2003; 81:184-91. PMID 12620396
  • Valverde P et al. Variants of the melanocyte-stimulating hormone receptor gene are associated with red hair and fair skin in humans. Nat Genet. 1995; 11:328-30. PMID 7581459
  • Snider J et al. Intracellular actin-based transport: how far you go depends on how often you switch. Proc Natl Acad Sci USA. 2004; 101:13204-9. PMID 15331778 Full text
  • Rodionov VI et al. Functional coordination of microtubule-based and actin-based motility in melanophores. Curr Biol. 1998; 8:165-8. PMID 9443917 Full text Archivado el 23 de octubre de 2008 en Wayback Machine.
  • Rodionov VI et al. Protein kinase A, which regulates intracellular transport, forms complexes with molecular motors on organelles. Curr Biol. 2002; 14:1877–81. PMID 15498498 Full text Archivado el 23 de octubre de 2008 en Wayback Machine.
  • Neuhauss SC. Behavioral genetic approaches to visual system development and function in zebrafish. J Neurobiol. 2003; 54:148-60. PMID 12486702. Full text — PDF.
  • Kelsh RN et al. Genetic analysis of melanophore development in zebrafish embryos.] Dev Biol. 2000; 225:277-93. PMID 10985850
  • Kelsh RN. Genetics and evolution of pigment patterns in fish. Pigment Cell Res. 2004; 17:326-36. PMID 15250934
  • Lamason RL et al. SLC24A5, a putative cation exchanger, affects pigmentation in zebrafish and humans. Science. 2005; 310:1782–6. PMID 16357253
  • Gibbons A (2007). «American Association of Physical Anthropologists meeting. European skin turned pale only recently, gene suggests». Science 316 (5823): 364. PMID 17446367. doi:10.1126/science.316.5823.364a. Archivado desde el original el 29 de junio de 2012. Consultado el 25 de noviembre de 2007. 
  • Logan DW et al. The structure and evolution of the melanocortin and MCH receptors in fish and mammals. Genomics. 2003; 81:184-91. PMID 12620396.
  • Jayawickreme CK et al. Use of a cell-based, lawn format assay to rapidly screen a 442,368 bead-based peptide library. J Pharmacol Toxicol Methods. 1999; 42:189-97. PMID 11033434
  • Andersson TP et al. Frog melanophores cultured on fluorescent microbeads: biomimic-based biosensing. Biosens Bioelectron. 2005; 21:111-20. PMID 15967358
  • Karlsson JO et al. The melanophore aggregating response of isolated fish scales: a very rapid and sensitive diagnosis of whooping cough. FEMS Microbiol Lett. 1991; 66:169-75. PMID 1936946
  • Cloney RA. & Florey E. Ultrastructure of cephalopod chromatophore organs. Z Zellforsch Mikrosk Anat. 1968; 89:250–280. PMID 5700268
  • Demski LS. Chromatophore systems in teleosts and cephalopods: a levels oriented analysis of convergent systems. Brain Behav Evol. 1992; 40:141-56. PMID 1422807
  • Salton MR. Bacterial membrane proteins. Microbiol Sci. 1987; 4:100-5. PMID 3153178
  • Frigaard NU. & Bryant DA. Seeing green bacteria in a new light: genomics-enabled studies of the photosynthetic apparatus in green sulfur bacteria and filamentous anoxygenic phototrophic bacteria. Arch Microbiol. 2004; 182:265-75. PMID 15340781

pnas.org

  • Snider J et al. Intracellular actin-based transport: how far you go depends on how often you switch. Proc Natl Acad Sci USA. 2004; 101:13204-9. PMID 15331778 Full text

psu.edu

live.psu.edu

sciencedirect.com

web.archive.org

wiley.com

www3.interscience.wiley.com

  • Neuhauss SC. Behavioral genetic approaches to visual system development and function in zebrafish. J Neurobiol. 2003; 54:148-60. PMID 12486702. Full text — PDF.