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  • Fonte: Journal of Neuroscience. Unidades: FMVZ, IQ

    Assuntos: RECEPTORES, NEURÔNIOS, PROTEÍNAS

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    • ABNT

      MACHADO, Cleiton F et al. Conditional deletion of Ric-8b in olfactory sensory neurons leads to olfactory impairment. Journal of Neuroscience, v. 37, n. 50, p. 12202-12213, 2017Tradução . . Disponível em: https://doi.org/10.1523/JNEUROSCI.0943-17.2017. Acesso em: 25 out. 2025.
    • APA

      Machado, C. F., Nagai, M. H., Lyra, C. S., Silva, T. M. R., Xavier, A. M., Glezer, I., et al. (2017). Conditional deletion of Ric-8b in olfactory sensory neurons leads to olfactory impairment. Journal of Neuroscience, 37( 50), 12202-12213. doi:10.1523/JNEUROSCI.0943-17.2017
    • NLM

      Machado CF, Nagai MH, Lyra CS, Silva TMR, Xavier AM, Glezer I, Felicio LF, Malnic B. Conditional deletion of Ric-8b in olfactory sensory neurons leads to olfactory impairment [Internet]. Journal of Neuroscience. 2017 ; 37( 50): 12202-12213.[citado 2025 out. 25 ] Available from: https://doi.org/10.1523/JNEUROSCI.0943-17.2017
    • Vancouver

      Machado CF, Nagai MH, Lyra CS, Silva TMR, Xavier AM, Glezer I, Felicio LF, Malnic B. Conditional deletion of Ric-8b in olfactory sensory neurons leads to olfactory impairment [Internet]. Journal of Neuroscience. 2017 ; 37( 50): 12202-12213.[citado 2025 out. 25 ] Available from: https://doi.org/10.1523/JNEUROSCI.0943-17.2017
  • Fonte: Journal of Neuroscience. Unidade: EP

    Assuntos: NEUROCIÊNCIAS, POSTURA

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    • ABNT

      WATANABE, Renato Naville e KOHN, André Fábio. Fast Oscillatory Commands from the Motor Cortex Can Be Decoded by the Spinal Cord for Force Control. Journal of Neuroscience, 2015Tradução . . Disponível em: https://doi.org/10.1523/JNEUROSCI.1950-15.2015. Acesso em: 25 out. 2025.
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      Watanabe, R. N., & Kohn, A. F. (2015). Fast Oscillatory Commands from the Motor Cortex Can Be Decoded by the Spinal Cord for Force Control. Journal of Neuroscience. doi:10.1523/JNEUROSCI.1950-15.2015
    • NLM

      Watanabe RN, Kohn AF. Fast Oscillatory Commands from the Motor Cortex Can Be Decoded by the Spinal Cord for Force Control [Internet]. Journal of Neuroscience. 2015 ;[citado 2025 out. 25 ] Available from: https://doi.org/10.1523/JNEUROSCI.1950-15.2015
    • Vancouver

      Watanabe RN, Kohn AF. Fast Oscillatory Commands from the Motor Cortex Can Be Decoded by the Spinal Cord for Force Control [Internet]. Journal of Neuroscience. 2015 ;[citado 2025 out. 25 ] Available from: https://doi.org/10.1523/JNEUROSCI.1950-15.2015
  • Fonte: Journal of Neuroscience. Unidade: IFSC

    Assuntos: NEUROCIÊNCIAS, NEUROPSIQUIATRIA, CÉREBRO (ESTUDO;ESTRUTURA)

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    • ABNT

      MOLL, Jorge et al. A neural signature of affiliative emotion in the human septohypothalamic area. Journal of Neuroscience, v. 32, n. 36, p. 12499-12505, 2012Tradução . . Disponível em: https://doi.org/10.1523/JNEUROSCI.6508-11.2012. Acesso em: 25 out. 2025.
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      Moll, J., Bado, P., Souza, R. de O., Bramati, I. E., Lima, D. O., Paiva, F. F., et al. (2012). A neural signature of affiliative emotion in the human septohypothalamic area. Journal of Neuroscience, 32( 36), 12499-12505. doi:10.1523/JNEUROSCI.6508-11.2012
    • NLM

      Moll J, Bado P, Souza R de O, Bramati IE, Lima DO, Paiva FF, Sato JR, Moll FT, Zahn R. A neural signature of affiliative emotion in the human septohypothalamic area [Internet]. Journal of Neuroscience. 2012 ; 32( 36): 12499-12505.[citado 2025 out. 25 ] Available from: https://doi.org/10.1523/JNEUROSCI.6508-11.2012
    • Vancouver

      Moll J, Bado P, Souza R de O, Bramati IE, Lima DO, Paiva FF, Sato JR, Moll FT, Zahn R. A neural signature of affiliative emotion in the human septohypothalamic area [Internet]. Journal of Neuroscience. 2012 ; 32( 36): 12499-12505.[citado 2025 out. 25 ] Available from: https://doi.org/10.1523/JNEUROSCI.6508-11.2012
  • Fonte: Journal of Neuroscience. Unidade: IFSC

    Assuntos: RECONHECIMENTO DE PADRÕES, NEUROCIÊNCIAS, FÍSICA COMPUTACIONAL

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      BRONCHINI, Ludmila e CARELLI, Pedro V. e PINTO, Reynaldo Daniel. Single synapse information coding in intraburst spike patterns of central pattern generator motor neurons. Journal of Neuroscience, v. 31, n. 34, p. 12297-12306, 2011Tradução . . Disponível em: https://doi.org/10.1523/JNEUROSCI.1568-11.2011. Acesso em: 25 out. 2025.
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      Bronchini, L., Carelli, P. V., & Pinto, R. D. (2011). Single synapse information coding in intraburst spike patterns of central pattern generator motor neurons. Journal of Neuroscience, 31( 34), 12297-12306. doi:10.1523/JNEUROSCI.1568-11.2011
    • NLM

      Bronchini L, Carelli PV, Pinto RD. Single synapse information coding in intraburst spike patterns of central pattern generator motor neurons [Internet]. Journal of Neuroscience. 2011 ; 31( 34): 12297-12306.[citado 2025 out. 25 ] Available from: https://doi.org/10.1523/JNEUROSCI.1568-11.2011
    • Vancouver

      Bronchini L, Carelli PV, Pinto RD. Single synapse information coding in intraburst spike patterns of central pattern generator motor neurons [Internet]. Journal of Neuroscience. 2011 ; 31( 34): 12297-12306.[citado 2025 out. 25 ] Available from: https://doi.org/10.1523/JNEUROSCI.1568-11.2011
  • Fonte: Journal of Neuroscience. Unidade: IFSC

    Assuntos: CÓRTEX CEREBRAL, AXÔNIOS (OBSERVAÇÃO), RETINA

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    • ABNT

      TREMBLAY, Marc et al. Regulation of radial glial motility by visual experience. Journal of Neuroscience, v. No 2009, n. 45, p. 14066-14076, 2009Tradução . . Disponível em: https://doi.org/10.1523/JNEUROSCI.3542-09.2009. Acesso em: 25 out. 2025.
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      Tremblay, M., Fugere, V., Tsui, J., Schohl, A., Tavakoli, A., Travençolo, B. A. N., et al. (2009). Regulation of radial glial motility by visual experience. Journal of Neuroscience, No 2009( 45), 14066-14076. doi:10.1523/JNEUROSCI.3542-09.2009
    • NLM

      Tremblay M, Fugere V, Tsui J, Schohl A, Tavakoli A, Travençolo BAN, Costa L da F, Ruthazer E. Regulation of radial glial motility by visual experience [Internet]. Journal of Neuroscience. 2009 ; No 2009( 45): 14066-14076.[citado 2025 out. 25 ] Available from: https://doi.org/10.1523/JNEUROSCI.3542-09.2009
    • Vancouver

      Tremblay M, Fugere V, Tsui J, Schohl A, Tavakoli A, Travençolo BAN, Costa L da F, Ruthazer E. Regulation of radial glial motility by visual experience [Internet]. Journal of Neuroscience. 2009 ; No 2009( 45): 14066-14076.[citado 2025 out. 25 ] Available from: https://doi.org/10.1523/JNEUROSCI.3542-09.2009
  • Fonte: Journal of Neuroscience. Unidade: FMRP

    Assunto: NEUROCIÊNCIAS

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      SAIRANEN, Mikko et al. Brain-derived neurotrophic factor and antidepressant drugs have different but coordinated effects on neuronal turnover, proliferation, and survival in the adult dentate gyrus. Journal of Neuroscience, v. 25, n. 5, p. 1089-1094, 2005Tradução . . Acesso em: 25 out. 2025.
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      Sairanen, M., Lucas, G. de A., Ernfors, P., Castrén, M., & Castrén, E. (2005). Brain-derived neurotrophic factor and antidepressant drugs have different but coordinated effects on neuronal turnover, proliferation, and survival in the adult dentate gyrus. Journal of Neuroscience, 25( 5), 1089-1094.
    • NLM

      Sairanen M, Lucas G de A, Ernfors P, Castrén M, Castrén E. Brain-derived neurotrophic factor and antidepressant drugs have different but coordinated effects on neuronal turnover, proliferation, and survival in the adult dentate gyrus. Journal of Neuroscience. 2005 ; 25( 5): 1089-1094.[citado 2025 out. 25 ]
    • Vancouver

      Sairanen M, Lucas G de A, Ernfors P, Castrén M, Castrén E. Brain-derived neurotrophic factor and antidepressant drugs have different but coordinated effects on neuronal turnover, proliferation, and survival in the adult dentate gyrus. Journal of Neuroscience. 2005 ; 25( 5): 1089-1094.[citado 2025 out. 25 ]
  • Fonte: Journal of Neuroscience. Unidade: IQ

    Assuntos: TRANSDUÇÃO DE SINAL CELULAR, PROTEÍNAS G

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    • ABNT

      VON DANNECKER, Luiz Eduardo Cabral e MERCADANTE, Adriana Frohlich e MALNIC, Bettina. Ric-8B, an olfactory putative GTP exchange factor, amplifies signal transduction through the olfactory-specific G-protein G'alpha'olf. Journal of Neuroscience, v. 25, n. 15, p. 3793-3800, 2005Tradução . . Acesso em: 25 out. 2025.
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      Von Dannecker, L. E. C., Mercadante, A. F., & Malnic, B. (2005). Ric-8B, an olfactory putative GTP exchange factor, amplifies signal transduction through the olfactory-specific G-protein G'alpha'olf. Journal of Neuroscience, 25( 15), 3793-3800.
    • NLM

      Von Dannecker LEC, Mercadante AF, Malnic B. Ric-8B, an olfactory putative GTP exchange factor, amplifies signal transduction through the olfactory-specific G-protein G'alpha'olf. Journal of Neuroscience. 2005 ; 25( 15): 3793-3800.[citado 2025 out. 25 ]
    • Vancouver

      Von Dannecker LEC, Mercadante AF, Malnic B. Ric-8B, an olfactory putative GTP exchange factor, amplifies signal transduction through the olfactory-specific G-protein G'alpha'olf. Journal of Neuroscience. 2005 ; 25( 15): 3793-3800.[citado 2025 out. 25 ]
  • Fonte: Journal of Neuroscience. Unidade: IFSC

    Assuntos: NEUROCIÊNCIAS, SISTEMA NERVOSO CENTRAL, PROTEÍNAS

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    • ABNT

      CHEN, Qi et al. Modifier of cell adhesion regulates N-cadherin-mediated cell-cell adhesion and neurite outgrowth. Journal of Neuroscience, v. 25, n. Ja 2005, p. 281-290, 2005Tradução . . Acesso em: 25 out. 2025.
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      Chen, Q., Chen, T. -J., Letourneau, P. C., Costa, L. da F., & Schubert, D. (2005). Modifier of cell adhesion regulates N-cadherin-mediated cell-cell adhesion and neurite outgrowth. Journal of Neuroscience, 25( Ja 2005), 281-290.
    • NLM

      Chen Q, Chen T-J, Letourneau PC, Costa L da F, Schubert D. Modifier of cell adhesion regulates N-cadherin-mediated cell-cell adhesion and neurite outgrowth. Journal of Neuroscience. 2005 ; 25( Ja 2005): 281-290.[citado 2025 out. 25 ]
    • Vancouver

      Chen Q, Chen T-J, Letourneau PC, Costa L da F, Schubert D. Modifier of cell adhesion regulates N-cadherin-mediated cell-cell adhesion and neurite outgrowth. Journal of Neuroscience. 2005 ; 25( Ja 2005): 281-290.[citado 2025 out. 25 ]
  • Fonte: Journal of Neuroscience. Unidade: FMRP

    Assunto: FARMACOLOGIA

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      ALESSANDRI-HABER, Nicole et al. Transient receptor potential vanilloid 4 is essential in chemotherapy-induced neuropathic pain in the rat. Journal of Neuroscience, v. 24, n. 18, p. 4444-4452, 2004Tradução . . Acesso em: 25 out. 2025.
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      Alessandri-Haber, N., Dina, O. A., Yeh, J. J., Parada, C. A., Reichling, D. B., & Levine, J. D. (2004). Transient receptor potential vanilloid 4 is essential in chemotherapy-induced neuropathic pain in the rat. Journal of Neuroscience, 24( 18), 4444-4452.
    • NLM

      Alessandri-Haber N, Dina OA, Yeh JJ, Parada CA, Reichling DB, Levine JD. Transient receptor potential vanilloid 4 is essential in chemotherapy-induced neuropathic pain in the rat. Journal of Neuroscience. 2004 ; 24( 18): 4444-4452.[citado 2025 out. 25 ]
    • Vancouver

      Alessandri-Haber N, Dina OA, Yeh JJ, Parada CA, Reichling DB, Levine JD. Transient receptor potential vanilloid 4 is essential in chemotherapy-induced neuropathic pain in the rat. Journal of Neuroscience. 2004 ; 24( 18): 4444-4452.[citado 2025 out. 25 ]
  • Fonte: Journal of Neuroscience. Unidade: IB

    Assuntos: 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: 25 out. 2025.
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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 2025 out. 25 ]
    • 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 2025 out. 25 ]
  • Fonte: Journal of Neuroscience. Unidades: FFCLRP, FMRP

    Assunto: DOENÇAS DO SISTEMA NERVOSO

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      HOSFORD, D A et al. Differences in the anatomic distribution of immediated-early gene expression in amygdala and angular bundle kindling development. Journal of Neuroscience, v. 15, n. 3 , p. 2513-23, 1995Tradução . . Disponível em: https://doi.org/10.1523/jneurosci.15-03-02513.1995. Acesso em: 25 out. 2025.
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      Hosford, D. A., Simonato, M., Cao, Z., Garcia-Cairasco, N., Silver, J. M., Butler, L., et al. (1995). Differences in the anatomic distribution of immediated-early gene expression in amygdala and angular bundle kindling development. Journal of Neuroscience, 15( 3 ), 2513-23. doi:10.1523/jneurosci.15-03-02513.1995
    • NLM

      Hosford DA, Simonato M, Cao Z, Garcia-Cairasco N, Silver JM, Butler L, Shin C, McNamara JC. Differences in the anatomic distribution of immediated-early gene expression in amygdala and angular bundle kindling development [Internet]. Journal of Neuroscience. 1995 ;15( 3 ): 2513-23.[citado 2025 out. 25 ] Available from: https://doi.org/10.1523/jneurosci.15-03-02513.1995
    • Vancouver

      Hosford DA, Simonato M, Cao Z, Garcia-Cairasco N, Silver JM, Butler L, Shin C, McNamara JC. Differences in the anatomic distribution of immediated-early gene expression in amygdala and angular bundle kindling development [Internet]. Journal of Neuroscience. 1995 ;15( 3 ): 2513-23.[citado 2025 out. 25 ] Available from: https://doi.org/10.1523/jneurosci.15-03-02513.1995

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