Filtros : "Provencio, Ignacio" Limpar

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  • Source: Cell and Tissue Research. Unidades: IB, ICB

    Subjects: TEMPERATURA, LUZ, MAMÍFEROS, PROTEÍNAS, DROSOPHILA

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    • ABNT

      MORAES, Maria Nathalia et al. Opsins outside the eye and the skin: a more complex scenario than originally thought for a classical light sensor. Cell and Tissue Research, v. 385, p. 519–538, 2021Tradução . . Disponível em: https://doi.org/10.1007/s00441-021-03500-0. Acesso em: 29 abr. 2026.
    • APA

      Moraes, M. N., Assis, L. V. M. de, Provencio, I., & Castrucci, A. M. de L. (2021). Opsins outside the eye and the skin: a more complex scenario than originally thought for a classical light sensor. Cell and Tissue Research, 385, 519–538. doi:10.1007/s00441-021-03500-0
    • NLM

      Moraes MN, Assis LVM de, Provencio I, Castrucci AM de L. Opsins outside the eye and the skin: a more complex scenario than originally thought for a classical light sensor [Internet]. Cell and Tissue Research. 2021 ; 385 519–538.[citado 2026 abr. 29 ] Available from: https://doi.org/10.1007/s00441-021-03500-0
    • Vancouver

      Moraes MN, Assis LVM de, Provencio I, Castrucci AM de L. Opsins outside the eye and the skin: a more complex scenario than originally thought for a classical light sensor [Internet]. Cell and Tissue Research. 2021 ; 385 519–538.[citado 2026 abr. 29 ] Available from: https://doi.org/10.1007/s00441-021-03500-0
  • Source: General and Comparative Endocrinology. Unidade: IB

    Subjects: LUZ, FISIOLOGIA, ANFÍBIOS

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    • ABNT

      ISOLDI, Mauro César e PROVENCIO, Ignacio e CASTRUCCI, Ana Maria de Lauro. Light modulates the melanophore response to α-MSH in Xenopus laevis: an analysis of the signal transduction crosstalk mechanisms involved. General and Comparative Endocrinology, v. 165, n. Ja 2010, p. 104-110, 2010Tradução . . Disponível em: https://doi.org/10.1016/j.ygcen.2009.06.014. Acesso em: 29 abr. 2026.
    • APA

      Isoldi, M. C., Provencio, I., & Castrucci, A. M. de L. (2010). Light modulates the melanophore response to α-MSH in Xenopus laevis: an analysis of the signal transduction crosstalk mechanisms involved. General and Comparative Endocrinology, 165( Ja 2010), 104-110. doi:10.1016/j.ygcen.2009.06.014
    • NLM

      Isoldi MC, Provencio I, Castrucci AM de L. Light modulates the melanophore response to α-MSH in Xenopus laevis: an analysis of the signal transduction crosstalk mechanisms involved [Internet]. General and Comparative Endocrinology. 2010 ; 165( Ja 2010): 104-110.[citado 2026 abr. 29 ] Available from: https://doi.org/10.1016/j.ygcen.2009.06.014
    • Vancouver

      Isoldi MC, Provencio I, Castrucci AM de L. Light modulates the melanophore response to α-MSH in Xenopus laevis: an analysis of the signal transduction crosstalk mechanisms involved [Internet]. General and Comparative Endocrinology. 2010 ; 165( Ja 2010): 104-110.[citado 2026 abr. 29 ] Available from: https://doi.org/10.1016/j.ygcen.2009.06.014
  • Source: Journal of Comparative Neurology. Unidade: IB

    Subjects: RETINA, FISIOLOGIA, RITMO CIRCADIANO

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      BERSON, David M e CASTRUCCI, Ana Maria de Lauro e PROVENCIO, Ignacio. Morphology and mosaics of melanopsin-expressing retinal ganglion cell types in mice. Journal of Comparative Neurology, v. 518, n. 13, p. 2405-2422, 2010Tradução . . Disponível em: https://doi.org/10.1002/cne.22381. Acesso em: 29 abr. 2026.
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      Berson, D. M., Castrucci, A. M. de L., & Provencio, I. (2010). Morphology and mosaics of melanopsin-expressing retinal ganglion cell types in mice. Journal of Comparative Neurology, 518( 13), 2405-2422. doi:10.1002/cne.22381
    • NLM

      Berson DM, Castrucci AM de L, Provencio I. Morphology and mosaics of melanopsin-expressing retinal ganglion cell types in mice [Internet]. Journal of Comparative Neurology. 2010 ; 518( 13): 2405-2422.[citado 2026 abr. 29 ] Available from: https://doi.org/10.1002/cne.22381
    • Vancouver

      Berson DM, Castrucci AM de L, Provencio I. Morphology and mosaics of melanopsin-expressing retinal ganglion cell types in mice [Internet]. Journal of Comparative Neurology. 2010 ; 518( 13): 2405-2422.[citado 2026 abr. 29 ] Available from: https://doi.org/10.1002/cne.22381
  • Source: Photochemistry and Photobiology. Unidade: IB

    Subjects: FISIOLOGIA, RETINA, LUZ (EFEITOS), PIGMENTOS

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    • ABNT

      KUMBALASIRI, T et al. Melanopsin triggers the release of internal calcium stores in response to light. Photochemistry and Photobiology, v. 83, n. 2, p. 273-279, 2007Tradução . . Disponível em: https://doi.org/10.1562/2006-07-11-RA-964. Acesso em: 29 abr. 2026.
    • APA

      Kumbalasiri, T., Rollag, M. D., Isoldi, M. C., Castrucci, A. M. de L., & Provencio, I. (2007). Melanopsin triggers the release of internal calcium stores in response to light. Photochemistry and Photobiology, 83( 2), 273-279. doi:10.1562/2006-07-11-RA-964
    • NLM

      Kumbalasiri T, Rollag MD, Isoldi MC, Castrucci AM de L, Provencio I. Melanopsin triggers the release of internal calcium stores in response to light [Internet]. Photochemistry and Photobiology. 2007 ; 83( 2): 273-279.[citado 2026 abr. 29 ] Available from: https://doi.org/10.1562/2006-07-11-RA-964
    • Vancouver

      Kumbalasiri T, Rollag MD, Isoldi MC, Castrucci AM de L, Provencio I. Melanopsin triggers the release of internal calcium stores in response to light [Internet]. Photochemistry and Photobiology. 2007 ; 83( 2): 273-279.[citado 2026 abr. 29 ] Available from: https://doi.org/10.1562/2006-07-11-RA-964
  • Source: PNAS - Proceedings of the National Academy of Sciences of the United States of America. Unidade: IB

    Subjects: RITMO CIRCADIANO, FISIOLOGIA, PROTEÍNAS, LUZ

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      DOYLE, Susan E et al. Nonvisual light responses in the Rpe65 knockout mouse: rod loss restores sensitivity to the melanopsin system. PNAS - Proceedings of the National Academy of Sciences of the United States of America, v. 103, n. 27, p. 10432-10437, 2006Tradução . . Disponível em: https://doi.org/10.1073/pnas.0600934103. Acesso em: 29 abr. 2026.
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      Doyle, S. E., Castrucci, A. M. de L., MCCall, M., Provencio, I., & Menaker, M. (2006). Nonvisual light responses in the Rpe65 knockout mouse: rod loss restores sensitivity to the melanopsin system. PNAS - Proceedings of the National Academy of Sciences of the United States of America, 103( 27), 10432-10437. doi:10.1073/pnas.0600934103
    • NLM

      Doyle SE, Castrucci AM de L, MCCall M, Provencio I, Menaker M. Nonvisual light responses in the Rpe65 knockout mouse: rod loss restores sensitivity to the melanopsin system [Internet]. PNAS - Proceedings of the National Academy of Sciences of the United States of America. 2006 ; 103( 27): 10432-10437.[citado 2026 abr. 29 ] Available from: https://doi.org/10.1073/pnas.0600934103
    • Vancouver

      Doyle SE, Castrucci AM de L, MCCall M, Provencio I, Menaker M. Nonvisual light responses in the Rpe65 knockout mouse: rod loss restores sensitivity to the melanopsin system [Internet]. PNAS - Proceedings of the National Academy of Sciences of the United States of America. 2006 ; 103( 27): 10432-10437.[citado 2026 abr. 29 ] Available from: https://doi.org/10.1073/pnas.0600934103
  • Source: PNAS - Proceedings of the National Academy of Science of the United States of America. Unidade: IB

    Subjects: RITMO CIRCADIANO, PROTEÍNAS, FISIOLOGIA, LUZ (EFEITOS)

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    • ABNT

      ISOLDI, Mauro César et al. Rhabdomeric phototransduction initiated by the vertebrate photopigment melanopsin. PNAS - Proceedings of the National Academy of Science of the United States of America, v. 102, n. Ja 2005, p. 1271-1221, 2005Tradução . . Disponível em: https://doi.org/10.1073/pnas.0409252102. Acesso em: 29 abr. 2026.
    • APA

      Isoldi, M. C., Rollag, M. D., Castrucci, A. M. de L., & Provencio, I. (2005). Rhabdomeric phototransduction initiated by the vertebrate photopigment melanopsin. PNAS - Proceedings of the National Academy of Science of the United States of America, 102( Ja 2005), 1271-1221. doi:10.1073/pnas.0409252102
    • NLM

      Isoldi MC, Rollag MD, Castrucci AM de L, Provencio I. Rhabdomeric phototransduction initiated by the vertebrate photopigment melanopsin [Internet]. PNAS - Proceedings of the National Academy of Science of the United States of America. 2005 ; 102( Ja 2005): 1271-1221.[citado 2026 abr. 29 ] Available from: https://doi.org/10.1073/pnas.0409252102
    • Vancouver

      Isoldi MC, Rollag MD, Castrucci AM de L, Provencio I. Rhabdomeric phototransduction initiated by the vertebrate photopigment melanopsin [Internet]. PNAS - Proceedings of the National Academy of Science of the United States of America. 2005 ; 102( Ja 2005): 1271-1221.[citado 2026 abr. 29 ] Available from: https://doi.org/10.1073/pnas.0409252102
  • Source: Science. Unidade: IB

    Assunto: RITMO CIRCADIANO

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    • ABNT

      PANDA, Satchidananda et al. Melanopsin is required for non-image-forming photic responses in blind mice. Science, v. 301, p. 525-527, 2003Tradução . . Acesso em: 29 abr. 2026.
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      Panda, S., Provencio, I., Tu, D. C., Pires, S., Rollag, M. D., Castrucci, A. M. de L., et al. (2003). Melanopsin is required for non-image-forming photic responses in blind mice. Science, 301, 525-527.
    • NLM

      Panda S, Provencio I, Tu DC, Pires S, Rollag MD, Castrucci AM de L, Pletcher MT, Sato TK, Wiltshire TJ, Andahazy M, Kay SA, Van Gelder RN, Hogenesch JB. Melanopsin is required for non-image-forming photic responses in blind mice. Science. 2003 ; 301 525-527.[citado 2026 abr. 29 ]
    • Vancouver

      Panda S, Provencio I, Tu DC, Pires S, Rollag MD, Castrucci AM de L, Pletcher MT, Sato TK, Wiltshire TJ, Andahazy M, Kay SA, Van Gelder RN, Hogenesch JB. Melanopsin is required for non-image-forming photic responses in blind mice. Science. 2003 ; 301 525-527.[citado 2026 abr. 29 ]
  • Source: Journal of Neuroscience. Unidade: IB

    Subjects: RITMO CIRCADIANO, FISIOLOGIA, MAMÍFEROS, RETINA

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      WEE, Raymond et al. Loss of photic entrainment and altered free-running circadian rhythms in math5−/− mice. Journal of Neuroscience, v. 22, n. 23, p. 10427-10433, 2002Tradução . . Acesso em: 29 abr. 2026.
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      Wee, R., Castrucci, A. M. de L., Provencio, I., Gan, L., & Van Gelder, R. N. (2002). Loss of photic entrainment and altered free-running circadian rhythms in math5−/− mice. Journal of Neuroscience, 22( 23), 10427-10433.
    • NLM

      Wee R, Castrucci AM de L, Provencio I, Gan L, Van Gelder RN. Loss of photic entrainment and altered free-running circadian rhythms in math5−/− mice. Journal of Neuroscience. 2002 ; 22( 23): 10427-10433.[citado 2026 abr. 29 ]
    • Vancouver

      Wee R, Castrucci AM de L, Provencio I, Gan L, Van Gelder RN. Loss of photic entrainment and altered free-running circadian rhythms in math5−/− mice. Journal of Neuroscience. 2002 ; 22( 23): 10427-10433.[citado 2026 abr. 29 ]
  • Source: Science. Unidade: IB

    Assunto: RITMO CIRCADIANO

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      PANDA, Satchidananda et al. Melanopsin (Opn4) requirement for normal light-induced circadian phase shifting. Science, v. 298, p. 2213-2216, 2002Tradução . . Acesso em: 29 abr. 2026.
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      Panda, S., Sato, T. K., Castrucci, A. M. de L., Rollag, M. D., DeGrip, W. J., Hogenesch, J., et al. (2002). Melanopsin (Opn4) requirement for normal light-induced circadian phase shifting. Science, 298, 2213-2216.
    • NLM

      Panda S, Sato TK, Castrucci AM de L, Rollag MD, DeGrip WJ, Hogenesch J, Provencio I, Kay SA. Melanopsin (Opn4) requirement for normal light-induced circadian phase shifting. Science. 2002 ; 298 2213-2216.[citado 2026 abr. 29 ]
    • Vancouver

      Panda S, Sato TK, Castrucci AM de L, Rollag MD, DeGrip WJ, Hogenesch J, Provencio I, Kay SA. Melanopsin (Opn4) requirement for normal light-induced circadian phase shifting. Science. 2002 ; 298 2213-2216.[citado 2026 abr. 29 ]

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