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Changes in the suprachiasmatic nucleus during aging: implications for biological rhythms
Engelberth, Rovena C. G. J; Pontes, André L. Bezerra de; Fiuza, Felipe Porto; Silva, Kayo D. de Azevedo; Resende, Nayra da S; Azevedo, Carolina Virgínia de M; Costa, Miriam S. M. O; Cavalcante, Judney C; Nascimento Junior, Expedito S; Gavioli, Elaine Cristina; Cavalcante, Jeferson S.
  • Engelberth, Rovena C. G. J; Universidade Federal do Rio Grande do Norte. Natal. BR
  • Pontes, André L. Bezerra de; Universidade Federal do Rio Grande do Norte. Natal. BR
  • Fiuza, Felipe Porto; Universidade Federal do Rio Grande do Norte. Natal. BR
  • Silva, Kayo D. de Azevedo; Universidade Federal do Rio Grande do Norte. Natal. BR
  • Resende, Nayra da S; Universidade Federal do Rio Grande do Norte. Natal. BR
  • Azevedo, Carolina Virgínia de M; Universidade Federal do Rio Grande do Norte. Natal. BR
  • Costa, Miriam S. M. O; Universidade Federal do Rio Grande do Norte. Natal. BR
  • Cavalcante, Judney C; Universidade Federal do Rio Grande do Norte. Natal. BR
  • Nascimento Junior, Expedito S; Universidade Federal do Rio Grande do Norte. Natal. BR
  • Gavioli, Elaine Cristina; Universidade Federal do Rio Grande do Norte. Natal. BR
  • Cavalcante, Jeferson S; Universidade Federal do Rio Grande do Norte. Natal. BR
Psychol. neurosci. (Impr.) ; 6(3): 287-297, July-Dec. 2013. ilus
Article in English | LILACS | ID: lil-703092
ABSTRACT
Animals have neural structures that allow them to anticipate environmental changes and then regulate physiological and behavioral functions in response to these alterations. The suprachiasmatic nucleus of the hypothalamus (SCN) is the main circadian pacemaker in many mammalian species. This structure synchronizes the biological rhythm based on photic information that is transmitted to the SCN through the retinohypothalamic tract. The aging process changes the structural complexity of the nervous system, from individual nerve cells to global changes, including the atrophy of total gray matter. Aged animals show internal time disruptions caused by morphological and neurochemical changes in SCN components. The effects of aging on circadian rhythm range from effects on simple physiological functions to effects on complex cognitive performance, including many psychiatric disorders that influence the well-being of the elderly. In this review, we summarize the effects of aging on morphological, neurochemical, and circadian rhythmic functions coordinated by the main circadian pacemaker, the SCN...
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Full text: Available Index: LILACS (Americas) Main subject: Suprachiasmatic Nucleus / Aging Limits: Humans Language: English Journal: Psychol. neurosci. (Impr.) Journal subject: Neurology / Psychology Year: 2013 Type: Article Affiliation country: Brazil Institution/Affiliation country: Universidade Federal do Rio Grande do Norte/BR

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Full text: Available Index: LILACS (Americas) Main subject: Suprachiasmatic Nucleus / Aging Limits: Humans Language: English Journal: Psychol. neurosci. (Impr.) Journal subject: Neurology / Psychology Year: 2013 Type: Article Affiliation country: Brazil Institution/Affiliation country: Universidade Federal do Rio Grande do Norte/BR