Núcleo central da amígdala e Núcleo parabraquial lateral no controle da ingestão de sódio

Detalhes bibliográficos
Ano de defesa: 2009
Autor(a) principal: Andrade, Gláucia Maria Fabrício de
Orientador(a): Menani, José Vanderlei lattes
Banca de defesa: Não Informado pela instituição
Tipo de documento: Dissertação
Tipo de acesso: Acesso aberto
Idioma: por
Instituição de defesa: Universidade Federal de São Carlos
Programa de Pós-Graduação: Programa Interinstitucional de Pós-Graduação em Ciências Fisiológicas - PIPGCF
Departamento: Não Informado pela instituição
País: BR
Palavras-chave em Português:
Palavras-chave em Inglês:
Área do conhecimento CNPq:
Link de acesso: https://repositorio.ufscar.br/handle/ufscar/1318
Resumo: Previous studies have shown the importance of serotonergic GABAergic and aadrenergic mechanisms of the lateral parabraquial nucleus (LBPN) in the control of sodium intake. The importance of the central nucleus of the amygdala (CeA) for sodium intake induced by different protocols was also demonstrated. Considering the studies showing reciprocal connections between these two structures, the objective of the present study was to investigate if the increase of sodium and water intake produced by the blockade of serotonergic mechanism, or the activation of GABAergic receptors or α2-adrenoceptors in the LPBN would depend on the CeA integrity. Male Holtzman rats with bilateral CeA lesions and bilateral stainless steel cannulas implanted in the LPBN were used to study the possible involvement of the CeA: 1) in water and 0.3 M NaCl intake produced by injections of the diuretic furosemide (FURO) combined with the angiotensin converting enzyme inhibitor captopril (CAP) subcutaneously (sc); 2) in the increase of 0.3 M NaCl intake induced by the blockade of serotonergic mechanisms or activation of the α2-adrenoceptors of the LPBN in rats treated with FURO + CAP sc; 3) in 0.3 M NaCl intake induced by the activation of GABAergic receptorss of the LPBN in satiated and normovolemic rats. Additionally, the pharmacological blockade of the CeA neurons with bilateral injections of GABAA receptor agonist muscimol was performed in order to test if the effects of CeA electrolytic lesions after the blockade of the inhibitory mechanisms of the NPBL were due to destruction of CeA neurons or destruction of fibers of passage. CeA lesionedrats had a decrease in daily water intake in comparison to sham-lesioned rats during the whole period of test, while the reduction of daily 0.3 M sodium intake occurred after the eighth day of lesions. Animals with bilateral lesions of the CeA also showed a reduction in body weight when compared to sham lesioned-rats. Bilateral lesions of the CeA did not affect FURO+CAP induced-water (9.2 1.6 ml/2 h vs. sham lesion: 12.8 0.7 ml/2 h) and 0.3 M NaCl intake (6.5 3.5 ml/2 h vs. sham lesion: 5.2 0.9 ml/2 h). Bilateral lesions of the CeA (3 days) completely abolished the ingestion of water (0.1 0.05 ml/4 h vs. sham lesion: 8.2 3.5 ml/4 h) and 0.3 M NaCl (0.1 0.1 ml/4 h vs. sham lesion: 16.1 5.4 ml/4 h) induced by bilateral injections of muscimol (0.5 nmol/0.2 μl) into the LPBN in satiated rats. Bilateral lesions of the CeA (5 to 18 days) also abolished the increase in 0.3 M NaCl (11,7 2,8 ml/2 h e 11,7 2,8 ml/2 h vs. sham lesion: 31,5 4,2 ml/2 h e 18,3 ± 3,1 ml/2 h) and water intake (6,7 1,8 ml/2 h e 13,8 2,7 ml/2 h vs. sham lesion: 19,9 3,2 ml/2 h e 22,4 2,5 ml/2 h) produced respectively by bilateral injections of moxonidine (0.5 nmol/0.2 μl) or methysergide (4 μg/0.2 μl) into the LPBN in FURO + CAP treated-rats. Bilateral injections of muscimol (0.5 nmol) into the CeA abolished water (0.1 0.02 ml/4 h vs. saline: 8.8 3.2 ml/4 h) and 0.3 M NaCl intake (0.1 0.04 ml/4h vs. saline: 19.1 6.4 ml/4 h) induced by bilateral injections of muscimol (0.5 nmol/0.2 μl) in the NPBL in satiated animals. Bilateral injections of muscimol (0.25 nmol/0.2 μl) in the CeA abolished the increase of water (3.3 2.3 ml/2 h vs. saline: 26.4 6.7 ml/2 h) and 0.3 M NaCl intake (2.8 1.6 ml/2 h vs. saline: 29.7 7.2 ml/2 h) produced by the bilateral injections of moxonidine (0.5 nmol/0.2 μl) into the NPBL. The present results show that CeA is essential for sodium and water intake after the blockade of LPBN inhibitory mechanisms. The suggestion is that CeA facilitatory mechanisms for sodium intake might be activated after the blockade of LPBN inhibitory mechanisms which might drive rats to ingest sodium. Therefore, if LPBN inhibitory mechanisms were acting normally, they may limit sodium intake because they inhibit CeA facilitatory signals for sodium intake.
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spelling Andrade, Gláucia Maria Fabrício deMenani, José Vanderleihttp://genos.cnpq.br:12010/dwlattes/owa/prc_imp_cv_int?f_cod=K4780462A5http://lattes.cnpq.br/6568042584596662bad741c5-2d2a-4812-910d-ac52d264eeb52016-06-02T19:22:52Z2010-04-132016-06-02T19:22:52Z2009-12-07ANDRADE, Gláucia Maria Fabrício de. Núcleo central da amígdala e Núcleo parabraquial lateral no controle da ingestão de sódio. 2009. 73 f. Dissertação (Mestrado em Ciências Biológicas) - Universidade Federal de São Carlos, Araraquara/São Carlos, 2009.https://repositorio.ufscar.br/handle/ufscar/1318Previous studies have shown the importance of serotonergic GABAergic and aadrenergic mechanisms of the lateral parabraquial nucleus (LBPN) in the control of sodium intake. The importance of the central nucleus of the amygdala (CeA) for sodium intake induced by different protocols was also demonstrated. Considering the studies showing reciprocal connections between these two structures, the objective of the present study was to investigate if the increase of sodium and water intake produced by the blockade of serotonergic mechanism, or the activation of GABAergic receptors or α2-adrenoceptors in the LPBN would depend on the CeA integrity. Male Holtzman rats with bilateral CeA lesions and bilateral stainless steel cannulas implanted in the LPBN were used to study the possible involvement of the CeA: 1) in water and 0.3 M NaCl intake produced by injections of the diuretic furosemide (FURO) combined with the angiotensin converting enzyme inhibitor captopril (CAP) subcutaneously (sc); 2) in the increase of 0.3 M NaCl intake induced by the blockade of serotonergic mechanisms or activation of the α2-adrenoceptors of the LPBN in rats treated with FURO + CAP sc; 3) in 0.3 M NaCl intake induced by the activation of GABAergic receptorss of the LPBN in satiated and normovolemic rats. Additionally, the pharmacological blockade of the CeA neurons with bilateral injections of GABAA receptor agonist muscimol was performed in order to test if the effects of CeA electrolytic lesions after the blockade of the inhibitory mechanisms of the NPBL were due to destruction of CeA neurons or destruction of fibers of passage. CeA lesionedrats had a decrease in daily water intake in comparison to sham-lesioned rats during the whole period of test, while the reduction of daily 0.3 M sodium intake occurred after the eighth day of lesions. Animals with bilateral lesions of the CeA also showed a reduction in body weight when compared to sham lesioned-rats. Bilateral lesions of the CeA did not affect FURO+CAP induced-water (9.2 1.6 ml/2 h vs. sham lesion: 12.8 0.7 ml/2 h) and 0.3 M NaCl intake (6.5 3.5 ml/2 h vs. sham lesion: 5.2 0.9 ml/2 h). Bilateral lesions of the CeA (3 days) completely abolished the ingestion of water (0.1 0.05 ml/4 h vs. sham lesion: 8.2 3.5 ml/4 h) and 0.3 M NaCl (0.1 0.1 ml/4 h vs. sham lesion: 16.1 5.4 ml/4 h) induced by bilateral injections of muscimol (0.5 nmol/0.2 μl) into the LPBN in satiated rats. Bilateral lesions of the CeA (5 to 18 days) also abolished the increase in 0.3 M NaCl (11,7 2,8 ml/2 h e 11,7 2,8 ml/2 h vs. sham lesion: 31,5 4,2 ml/2 h e 18,3 ± 3,1 ml/2 h) and water intake (6,7 1,8 ml/2 h e 13,8 2,7 ml/2 h vs. sham lesion: 19,9 3,2 ml/2 h e 22,4 2,5 ml/2 h) produced respectively by bilateral injections of moxonidine (0.5 nmol/0.2 μl) or methysergide (4 μg/0.2 μl) into the LPBN in FURO + CAP treated-rats. Bilateral injections of muscimol (0.5 nmol) into the CeA abolished water (0.1 0.02 ml/4 h vs. saline: 8.8 3.2 ml/4 h) and 0.3 M NaCl intake (0.1 0.04 ml/4h vs. saline: 19.1 6.4 ml/4 h) induced by bilateral injections of muscimol (0.5 nmol/0.2 μl) in the NPBL in satiated animals. Bilateral injections of muscimol (0.25 nmol/0.2 μl) in the CeA abolished the increase of water (3.3 2.3 ml/2 h vs. saline: 26.4 6.7 ml/2 h) and 0.3 M NaCl intake (2.8 1.6 ml/2 h vs. saline: 29.7 7.2 ml/2 h) produced by the bilateral injections of moxonidine (0.5 nmol/0.2 μl) into the NPBL. The present results show that CeA is essential for sodium and water intake after the blockade of LPBN inhibitory mechanisms. The suggestion is that CeA facilitatory mechanisms for sodium intake might be activated after the blockade of LPBN inhibitory mechanisms which might drive rats to ingest sodium. Therefore, if LPBN inhibitory mechanisms were acting normally, they may limit sodium intake because they inhibit CeA facilitatory signals for sodium intake.Estudos anteriores demonstraram a importancia dos mecanismos serotoninergicos, GABAergicos e adrenergicos do nucleo parabraquial lateral (NPBL) na regulacao da ingestao de sodio hipertonico. Tambem ja foi demonstrada a importancia do nucleo central da amigdala (CeA) para a ingestao de sodio hipertonico induzida por diferentes protocolos. Considerando-se os estudos mostrando conexoes reciprocas entre essas duas estruturas, o objetivo do presente estudo foi investigar se o aumento da ingestao de sodio hipertonico produzido pelo bloqueio serotoninergico ou ativacao GABAergica ou adrenergica no NPBL dependeria da integridade do CeA. Em ratos com lesoes bilaterais do CeA e com canulas de aco inoxidavel implantadas bilateralmente no NPBL, foi estudado o possivel envolvimento do CeA: 1) na ingestao de agua e NaCl 0,3 M produzida pelo tratamento subcutaneo com o diuretico furosemida (FURO) combinado com o inibidor da enzima conversora de angiotensina captopril (CAP); 2) no aumento da ingestao de NaCl 0,3 M produzido pelo bloqueio de receptores serotoninergicos ou ativacao dos receptores adrenergicos α2 do NPBL em ratos tratados com FURO + CAP sc; 3) na ingestao de NaCl 0,3 M induzida pela ativacao de receptores GABAergicos do NPBL em ratos saciados e normovolemicos. Adicionalmente, foi realizado o bloqueio farmacologico dos neuronios do CeA com injecoes bilaterais de muscimol, agonista de receptor GABAA, para verificar se os efeitos das lesoes eletroliticas do CeA apos o bloqueio dos mecanismos inibitorios do NPBL eram devido a destruicao de neuronios do CeA ou destruicao de fibras de passagem. Em animais com lesoes bilaterais do CeA a ingestao diaria de agua foi menor quando comparada aos animais com lesoes ficticias ao longo de todo periodo experimental, enquanto que a ingestao diaria de NaCl 0,3 M foi reduzida a partir do oitavo dia apos as lesoes. Esses animais apresentaram uma reducao no peso corporal persistente por todo periodo experimental comparado com o grupo com lesoes ficticias. As lesoes bilaterais do CeA nao afetaram a ingestao de agua (9,2 1,6 ml/2 h vs. lesoes ficticias: 12,8 0,7 ml/2 h) e NaCl 0,3 M (6,5 3,5 ml/2 h vs. lesoes ficticias 5,2 0,9 ml/2 h) induzida por FURO + CAP sc. As lesoes bilaterais do CeA (3 dias) aboliram a ingestao de NaCl 0,3 M (0,1 0,1 ml/4 h vs. lesoes ficticias: 16,1 5,4 ml/4 h) e de agua (0,1 0,05 ml/4 h vs. lesoes ficticias: 8,2 3,5 ml/4 h) induzida pelas injecoes bilaterais de muscimol (0,5 nmol/0,2 μl) no NPBL de ratos saciados. As lesoes bilaterais do CeA (5 a 18 dias) tambem aboliram o aumento da ingestao de NaCl 0,3 M (11,7 2,8 ml/2 h e 11,7 2,8 ml/2 h vs. lesoes ficticias: 31,5 4,2 ml/2 h e 18,3 ± 3,1 ml/2 h) e agua (6,7 1,8 ml/2 h e 13,8 2,7 ml/2 h vs. lesoes ficticias: 19,9 3,2 ml/2 h e 22,4 2,5 ml/2 h) induzidos, respectivamente, pelas injecoes bilaterais de moxonidina (0,5 nmol/0,2 μl) ou metisergida (4 μg/0,2 μl) em ratos previamente tratados com FURO+CAP sc. Injecoes bilaterais de muscimol (0,5 nmol/0,2 μl) no CeA aboliram a ingestao de agua (0,1 0,02 ml/4 h vs. salina: 8,8 3,2 ml/4 h) e NaCl 0,3 M (0,1 0,04 ml/4h vs. salina: 19,1 6,4 ml/4 h) induzidas pela injecao bilateral de muscimol (0,5 nmol/0,2 μl) no NPBL em animais saciados, como tambem as injecoes bilaterais de muscimol (0,25 nmol/0,2 μl) no CeA aboliram o aumento da ingestao de agua (3,3 2,3 ml/2 h vs. salina: 26,4 6,7 ml/2 h) e NaCl 0,3 M (2,8 1,6 ml/2 h vs. salina: 29,7 7,2 ml/2 h) produzido pela injecao bilateral de moxonidina (0,5 nmol/0,2 μl) no NPBL em animais tratados com FURO + CAP sc. Esses resultados demonstram que o CeA e essencial para a ingestao de sodio e agua que ocorre apos o bloqueio dos mecanismos inibitorios do NPBL. A sugestao e que mecanismos facilitatorios para a ingestao de sodio presentes no CeA seriam ativados apos o bloqueio dos mecanismos inibitorios do NPBL o que estimularia os animais a ingerirem sodio. Portanto, se estiverem atuando normalmente, os mecanismos inibitorios do NPBL limitariam a ingestao de sodio porque inibiriam os sinais facilitatorios para ingestao de sodio produzidos pelo CeA.Universidade Federal de Minas Geraisapplication/pdfporUniversidade Federal de São CarlosPrograma Interinstitucional de Pós-Graduação em Ciências Fisiológicas - PIPGCFUFSCarBRFisiologiaIngestão de água e sódioApetite ao sódioNúcleo central da amígdalaNúcleo parabraquial lateralSodium appetiteParabrachial nucleusAmygdalaMuscimolGABAAngiotensinSerotoninAdrenergic receptorsCIENCIAS BIOLOGICAS::FISIOLOGIANúcleo central da amígdala e Núcleo parabraquial lateral no controle da ingestão de sódioinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/masterThesis-1-1db436073-b604-4114-a5c8-76b09c26d760info:eu-repo/semantics/openAccessreponame:Repositório Institucional da UFSCARinstname:Universidade Federal de São Carlos (UFSCAR)instacron:UFSCARORIGINAL2885.pdfapplication/pdf1014245https://repositorio.ufscar.br/bitstream/ufscar/1318/1/2885.pdff9caee9a0cfd9bbc23af2760d02bb6a9MD51THUMBNAIL2885.pdf.jpg2885.pdf.jpgIM Thumbnailimage/jpeg8691https://repositorio.ufscar.br/bitstream/ufscar/1318/2/2885.pdf.jpg38220618185f549b87230f6485f54d05MD52ufscar/13182023-09-18 18:31:39.173oai:repositorio.ufscar.br:ufscar/1318Repositório InstitucionalPUBhttps://repositorio.ufscar.br/oai/requestopendoar:43222023-09-18T18:31:39Repositório Institucional da UFSCAR - Universidade Federal de São Carlos (UFSCAR)false
dc.title.por.fl_str_mv Núcleo central da amígdala e Núcleo parabraquial lateral no controle da ingestão de sódio
title Núcleo central da amígdala e Núcleo parabraquial lateral no controle da ingestão de sódio
spellingShingle Núcleo central da amígdala e Núcleo parabraquial lateral no controle da ingestão de sódio
Andrade, Gláucia Maria Fabrício de
Fisiologia
Ingestão de água e sódio
Apetite ao sódio
Núcleo central da amígdala
Núcleo parabraquial lateral
Sodium appetite
Parabrachial nucleus
Amygdala
Muscimol
GABA
Angiotensin
Serotonin
Adrenergic receptors
CIENCIAS BIOLOGICAS::FISIOLOGIA
title_short Núcleo central da amígdala e Núcleo parabraquial lateral no controle da ingestão de sódio
title_full Núcleo central da amígdala e Núcleo parabraquial lateral no controle da ingestão de sódio
title_fullStr Núcleo central da amígdala e Núcleo parabraquial lateral no controle da ingestão de sódio
title_full_unstemmed Núcleo central da amígdala e Núcleo parabraquial lateral no controle da ingestão de sódio
title_sort Núcleo central da amígdala e Núcleo parabraquial lateral no controle da ingestão de sódio
author Andrade, Gláucia Maria Fabrício de
author_facet Andrade, Gláucia Maria Fabrício de
author_role author
dc.contributor.authorlattes.por.fl_str_mv http://lattes.cnpq.br/6568042584596662
dc.contributor.author.fl_str_mv Andrade, Gláucia Maria Fabrício de
dc.contributor.advisor1.fl_str_mv Menani, José Vanderlei
dc.contributor.advisor1Lattes.fl_str_mv http://genos.cnpq.br:12010/dwlattes/owa/prc_imp_cv_int?f_cod=K4780462A5
dc.contributor.authorID.fl_str_mv bad741c5-2d2a-4812-910d-ac52d264eeb5
contributor_str_mv Menani, José Vanderlei
dc.subject.por.fl_str_mv Fisiologia
Ingestão de água e sódio
Apetite ao sódio
Núcleo central da amígdala
Núcleo parabraquial lateral
topic Fisiologia
Ingestão de água e sódio
Apetite ao sódio
Núcleo central da amígdala
Núcleo parabraquial lateral
Sodium appetite
Parabrachial nucleus
Amygdala
Muscimol
GABA
Angiotensin
Serotonin
Adrenergic receptors
CIENCIAS BIOLOGICAS::FISIOLOGIA
dc.subject.eng.fl_str_mv Sodium appetite
Parabrachial nucleus
Amygdala
Muscimol
GABA
Angiotensin
Serotonin
Adrenergic receptors
dc.subject.cnpq.fl_str_mv CIENCIAS BIOLOGICAS::FISIOLOGIA
description Previous studies have shown the importance of serotonergic GABAergic and aadrenergic mechanisms of the lateral parabraquial nucleus (LBPN) in the control of sodium intake. The importance of the central nucleus of the amygdala (CeA) for sodium intake induced by different protocols was also demonstrated. Considering the studies showing reciprocal connections between these two structures, the objective of the present study was to investigate if the increase of sodium and water intake produced by the blockade of serotonergic mechanism, or the activation of GABAergic receptors or α2-adrenoceptors in the LPBN would depend on the CeA integrity. Male Holtzman rats with bilateral CeA lesions and bilateral stainless steel cannulas implanted in the LPBN were used to study the possible involvement of the CeA: 1) in water and 0.3 M NaCl intake produced by injections of the diuretic furosemide (FURO) combined with the angiotensin converting enzyme inhibitor captopril (CAP) subcutaneously (sc); 2) in the increase of 0.3 M NaCl intake induced by the blockade of serotonergic mechanisms or activation of the α2-adrenoceptors of the LPBN in rats treated with FURO + CAP sc; 3) in 0.3 M NaCl intake induced by the activation of GABAergic receptorss of the LPBN in satiated and normovolemic rats. Additionally, the pharmacological blockade of the CeA neurons with bilateral injections of GABAA receptor agonist muscimol was performed in order to test if the effects of CeA electrolytic lesions after the blockade of the inhibitory mechanisms of the NPBL were due to destruction of CeA neurons or destruction of fibers of passage. CeA lesionedrats had a decrease in daily water intake in comparison to sham-lesioned rats during the whole period of test, while the reduction of daily 0.3 M sodium intake occurred after the eighth day of lesions. Animals with bilateral lesions of the CeA also showed a reduction in body weight when compared to sham lesioned-rats. Bilateral lesions of the CeA did not affect FURO+CAP induced-water (9.2 1.6 ml/2 h vs. sham lesion: 12.8 0.7 ml/2 h) and 0.3 M NaCl intake (6.5 3.5 ml/2 h vs. sham lesion: 5.2 0.9 ml/2 h). Bilateral lesions of the CeA (3 days) completely abolished the ingestion of water (0.1 0.05 ml/4 h vs. sham lesion: 8.2 3.5 ml/4 h) and 0.3 M NaCl (0.1 0.1 ml/4 h vs. sham lesion: 16.1 5.4 ml/4 h) induced by bilateral injections of muscimol (0.5 nmol/0.2 μl) into the LPBN in satiated rats. Bilateral lesions of the CeA (5 to 18 days) also abolished the increase in 0.3 M NaCl (11,7 2,8 ml/2 h e 11,7 2,8 ml/2 h vs. sham lesion: 31,5 4,2 ml/2 h e 18,3 ± 3,1 ml/2 h) and water intake (6,7 1,8 ml/2 h e 13,8 2,7 ml/2 h vs. sham lesion: 19,9 3,2 ml/2 h e 22,4 2,5 ml/2 h) produced respectively by bilateral injections of moxonidine (0.5 nmol/0.2 μl) or methysergide (4 μg/0.2 μl) into the LPBN in FURO + CAP treated-rats. Bilateral injections of muscimol (0.5 nmol) into the CeA abolished water (0.1 0.02 ml/4 h vs. saline: 8.8 3.2 ml/4 h) and 0.3 M NaCl intake (0.1 0.04 ml/4h vs. saline: 19.1 6.4 ml/4 h) induced by bilateral injections of muscimol (0.5 nmol/0.2 μl) in the NPBL in satiated animals. Bilateral injections of muscimol (0.25 nmol/0.2 μl) in the CeA abolished the increase of water (3.3 2.3 ml/2 h vs. saline: 26.4 6.7 ml/2 h) and 0.3 M NaCl intake (2.8 1.6 ml/2 h vs. saline: 29.7 7.2 ml/2 h) produced by the bilateral injections of moxonidine (0.5 nmol/0.2 μl) into the NPBL. The present results show that CeA is essential for sodium and water intake after the blockade of LPBN inhibitory mechanisms. The suggestion is that CeA facilitatory mechanisms for sodium intake might be activated after the blockade of LPBN inhibitory mechanisms which might drive rats to ingest sodium. Therefore, if LPBN inhibitory mechanisms were acting normally, they may limit sodium intake because they inhibit CeA facilitatory signals for sodium intake.
publishDate 2009
dc.date.issued.fl_str_mv 2009-12-07
dc.date.available.fl_str_mv 2010-04-13
2016-06-02T19:22:52Z
dc.date.accessioned.fl_str_mv 2016-06-02T19:22:52Z
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
dc.type.driver.fl_str_mv info:eu-repo/semantics/masterThesis
format masterThesis
status_str publishedVersion
dc.identifier.citation.fl_str_mv ANDRADE, Gláucia Maria Fabrício de. Núcleo central da amígdala e Núcleo parabraquial lateral no controle da ingestão de sódio. 2009. 73 f. Dissertação (Mestrado em Ciências Biológicas) - Universidade Federal de São Carlos, Araraquara/São Carlos, 2009.
dc.identifier.uri.fl_str_mv https://repositorio.ufscar.br/handle/ufscar/1318
identifier_str_mv ANDRADE, Gláucia Maria Fabrício de. Núcleo central da amígdala e Núcleo parabraquial lateral no controle da ingestão de sódio. 2009. 73 f. Dissertação (Mestrado em Ciências Biológicas) - Universidade Federal de São Carlos, Araraquara/São Carlos, 2009.
url https://repositorio.ufscar.br/handle/ufscar/1318
dc.language.iso.fl_str_mv por
language por
dc.relation.confidence.fl_str_mv -1
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dc.relation.authority.fl_str_mv db436073-b604-4114-a5c8-76b09c26d760
dc.rights.driver.fl_str_mv info:eu-repo/semantics/openAccess
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv application/pdf
dc.publisher.none.fl_str_mv Universidade Federal de São Carlos
dc.publisher.program.fl_str_mv Programa Interinstitucional de Pós-Graduação em Ciências Fisiológicas - PIPGCF
dc.publisher.initials.fl_str_mv UFSCar
dc.publisher.country.fl_str_mv BR
publisher.none.fl_str_mv Universidade Federal de São Carlos
dc.source.none.fl_str_mv reponame:Repositório Institucional da UFSCAR
instname:Universidade Federal de São Carlos (UFSCAR)
instacron:UFSCAR
instname_str Universidade Federal de São Carlos (UFSCAR)
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institution UFSCAR
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repository.name.fl_str_mv Repositório Institucional da UFSCAR - Universidade Federal de São Carlos (UFSCAR)
repository.mail.fl_str_mv
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