Mostrar el registro sencillo del ítem

dc.contributor.authorPatiño, Jennyspa
dc.contributor.authorCorredor, Lauraspa
dc.contributor.authorDueñas, Zulmaspa
dc.date.accessioned2014-06-30 00:00:00
dc.date.accessioned2022-03-08T16:18:01Z
dc.date.available2014-06-30 00:00:00
dc.date.available2022-03-08T16:18:01Z
dc.date.issued2014-06-30
dc.identifier.issn2389-7325
dc.identifier.urihttps://repositorio.uniboyaca.edu.co/handle/uniboyaca/275
dc.format.mimetypeapplication/pdfspa
dc.language.isospaspa
dc.publisherUniversidad de Boyacáspa
dc.rights.urihttps://creativecommons.org/licenses/by-nc-sa/4.0/spa
dc.sourcehttps://revistasdigitales.uniboyaca.edu.co/index.php/rs/article/view/34spa
dc.titleImpacto de la separación materna durante la lactancia sobre el tamaño del cerebro y en otros aspectos morfofisiológicosspa
dc.typeArtículo de revistaspa
dc.typeJournal articleeng
dc.identifier.doi10.24267/23897325.34
dc.identifier.eissn2539-2018
dc.identifier.urlhttps://doi.org/10.24267/23897325.34
dc.relation.bitstreamhttps://revistasdigitales.uniboyaca.edu.co/index.php/rs/article/download/34/52
dc.relation.citationeditionNúm. 1 , Año 2014 : Revista de Investigación en Salud Universidad de Boyacáspa
dc.relation.citationendpage44
dc.relation.citationissue1spa
dc.relation.citationstartpage31
dc.relation.citationvolume1spa
dc.relation.ispartofjournalRevista Investigación en Salud Universidad de Boyacáspa
dc.relation.referencesNeigh GN, Gillespie CF, Nemeroff CB. The neurobiological toll of child abuse and neglect. Trauma Violence Abuse. 2009;10:389-410.spa
dc.relation.referencesCicchetti D, Manly JT. Operationalizing child maltreatment: Developmental processes and outcomes. Dev Psychopathol. 2001;13:755-7.spa
dc.relation.referencesLai MC, Huang LT. Effects of early life stress on neuroendocrine andneurobehavior: Mechanisms and implications. PediatrNeonatol. 2011;52:122-9.spa
dc.relation.referencesMesa-Gresa P, Moya-Albiol L. Neurobiology of child abuse: The cycle of violence. Rev Neurol. 2011;52:489-503.spa
dc.relation.referencesMoriceau S, Roth TL, Sullivan RM. Rodent model of infant attachment learning and stress. Dev Psychobiol. 2010;52:651-60.spa
dc.relation.referencesLesch KP. When the serotonin transporter gene meets adversity: The contribution of animal models to understanding epigenetic mechanisms in affective disorders and resilience. Curr Top BehavNeurosci. 2011;7:251-80.spa
dc.relation.referencesSchmidt MV, Wang XD, Meijer OC. Early life stress paradigms in rodents: Potential animal models of depression? Psychopharmacology. 2011;214:131-40.spa
dc.relation.referencesSalzberg M, Kumar G, Supit L, Jones NC, Morris MJ, Rees S, et al. Early postnatal stress confers enduring vulnerability to limbic epileptogenesis.spa
dc.relation.referencesEpilepsia. 2007;48:2079-85.spa
dc.relation.referencesDuque A, Coman D, Carlyle BC, Bordner KA, George ED, Papademetris X, et al. Neuroanatomical changes in a mouse model of early life neglect. Brain StructFunct. 2011;217:459-72.spa
dc.relation.referencesLitvin Y, Tovote P, Pentkowski NS, Zeyda T, King LB, Vasconcellosspa
dc.relation.referencesAJ, et al. Maternal separation modulates short-term behavioral and physiological indices of the stress response. HormBehav. 2010;58:241-9. 13. McEwen B, Sapolsky R. Stress and cognitive function. CurrOpinNeurobiol. 1995;5:205-16.spa
dc.relation.referencesCotella EM, Mestres I, Franchioni L, Levin GM, Suárez MM. Long-term effects of maternal separation on chronic stress response suppressed by amitriptyline treatment. Stress. 2013;16:477-81.spa
dc.relation.referencesLajud N, Roque A, Cajero M, Gutiérrez-Ospina G, Torner L. Periodic maternal separation decreases hippocampal neurogenesis without affecting basal corticosterone during the stress hyporesponsive period, but alters HPA axis and coping behavior in adulthood. Psychoneuroendocrinology. 2012;37:410-20.spa
dc.relation.referencesSigel E, Steinmann ME. Structure, function, and modulation of GABA (A)receptors. J Biol Chem. 2012;287:40224-31.spa
dc.relation.referencesJacobson-Pick S, Richter-Levin G. Short- and long-term effects of juvenile stressor exposure on the expression of GABAA receptor subunits in rats. Stress. 2012;15:416-24.spa
dc.relation.referencesSiegel GJ. Basic neurochemistry: Molecular, cellular and medical aspect. Sixth edition. Philadelphia: Lippincott Williams & Wilkins Publishers; 1999.spa
dc.relation.referencesHörtnagl H, Tasan RO, Wieselthaler A, Kirchmair E, Sieghart W, Sperk G. Patterns of mRNA and protein expression for 12 GABA A receptor subunits in the mouse brain. Neuroscience. 2013;236:345-72.spa
dc.relation.referencesLevy LM, Degnan AJ. GABA-based evaluation of neurologic conditions: MR spectroscopy. AJNR Am J Neuroradiol. 2013;34:259-65.spa
dc.relation.referencesDarlison M, Pahal I, Thode C. Consequences of the evolution of the GABAA receptor gene family. Cell MolNeurobiol. 2005;25:607-24.spa
dc.relation.referencesPirker S, Schwarzer C, Wieselthaler A, Sieghart W, Sperk G. GABA A receptors: Immunocytochemical distribution of 13 subunits in the adult rat brain. Neuroscience. 2000;101:815-50.spa
dc.relation.referencesBowery NG, Smart TG. GABA and glycine as neurotransmitters: A brief history. Br J Pharmacol. 2006;147:109-19.spa
dc.relation.referencesEnna SJ, Gallagher JP. Biochemical and electrophysiological characteristics of mammalian GABA receptors.Int Rev Neurobiol. 1983;24:181-212.spa
dc.relation.referencesBäckberg M, Ultenius C, Fritschy JM, Meister B. Cellular localization of GABA A receptor α subunit inmunoreactivityin the rat hypothalamusspa
dc.relation.referencesRelationship with neurones containing orexigenic or anorexigenic peptides.spa
dc.relation.referencesJ Neuroendocrinol. 2004;16:589-604.spa
dc.relation.referencesLewis DA, Cho RY, Carter CS, Eklund K, Forster S, Kelly MA, et al. Subunitselective modulation of GABA type A receptor neurotransmission and cognition in schizophrenia. Am J Psychiatry. 2008;165:1585-93.spa
dc.relation.referencesMöhler H. Molecular regulation of cognitive functions and developmental plasticity: Impact of GABAA. J Neurochem. 2007;102:1-12spa
dc.relation.referencesSun C, Sieghart W, Kapur J. Distribution of a1, a4, g2, and ψ subunits of GABA A receptors in hippocampal granule cells. Brain Res. 2004;1029:207-16.spa
dc.relation.referencesLeón-Rodríguez D, Dueñas Z. Effects of early maternal separation on the performance in the elevated plus maze in adult rats. ActaBiolColomb. 2012;17:129-42.spa
dc.relation.referencesPaxinos G, Watson C. The rat brain. In: Stereotaxic coordinates. Fourth edition. San Diego: Academic Press; 2004.spa
dc.relation.referencesCzéh B, Lucassen PJ. What causes the hippocampal volume decrease in depression? Are neurogenesis, glial changes and apoptosis implica-ted? Eur Arch Psychiatry ClinNeurosci. 2007;257:250-60.spa
dc.relation.referencesShucard JL, Cox J, Shucard DW, Fetter H, Chung C, Ramasamyspa
dc.relation.referencesD, et al. Symptoms of posttraumatic stress disorder and exposure to traumatic stressors are related to brain structural volumes and behavioral measures of affective stimulus processing in police officers. Psychiatry Res. 2012;30;204:25-31.spa
dc.relation.referencesPawluski JL, Valença A, Santos AI, Costa-Nunes JP, Steinbusch 37. HW, Strekalova T. Pregnancy or stress decrease complexity of CA3 pyramidal neurons in the hippocampus of adult female rats. Neuroscience. 2012; 227:201-10.spa
dc.relation.referencesHsu FC, Zhang GJ, Raol YS, Valentino RJ, Coulter DA, Brooks-Kayalspa
dc.relation.referencesAR. Repeated neonatal handling with maternal separation permanently alters hippocampal GABA A receptors and behavioral stress responses. ProcNatlAcadSci U S A. 2003;100:12213-8.spa
dc.relation.referencesAisa B, Tordera R, Lasheras B, Del Río J, Ramírez M. Cognitive impairment associated to HPA axis hyperactivity after maternal separation in rats. Psychoneuroendocrinology. 2007;32:256-66.spa
dc.relation.referencesFagiolini M, Fritschy JM, Löw K, Möhler H, Rudolph U, Hensch T.spa
dc.relation.referencesSpecific GABA A circuits for visual cortical plasticity. Science. 2004;303:1681- 83.spa
dc.relation.referencesAmaral DG, Dent JA. Development of the mossy fibers of the dentate gyrus. I. A light and electron microscopic study of the mossy fibers and their expansions. J Comp Neurol. 1981;195:51-86.spa
dc.relation.referencesEnthoven L, de Kloet ER, Oitzl MS. Differential development of stress system (re)activity at weaning dependent on time of disruption of maternal care. Brain Res. 2008;1217:62-9.spa
dc.rights.accessrightsinfo:eu-repo/semantics/openAccessspa
dc.title.translatedImpacto de la separación materna durante la lactancia sobre el tamaño del cerebro y en otros aspectos morfofisiológicoseng
dc.type.coarhttp://purl.org/coar/resource_type/c_6501spa
dc.type.coarhttp://purl.org/coar/resource_type/c_6501spa
dc.type.coarversionhttp://purl.org/coar/version/c_970fb48d4fbd8a85spa
dc.type.contentTextspa
dc.type.driverinfo:eu-repo/semantics/articlespa
dc.type.redcolhttp://purl.org/redcol/resource_type/ARTREFspa
dc.type.versioninfo:eu-repo/semantics/publishedVersionspa
dc.rights.coarhttp://purl.org/coar/access_right/c_abf2spa


Ficheros en el ítem

FicherosTamañoFormatoVer
Revista Investig. Salud Univ. Boyacá-34.pdf274.8Kbapplication/pdfVer/

Este ítem aparece en la(s) siguiente(s) colección(ones)

Mostrar el registro sencillo del ítem

https://creativecommons.org/licenses/by-nc-sa/4.0/
Excepto si se señala otra cosa, la licencia del ítem se describe como https://creativecommons.org/licenses/by-nc-sa/4.0/