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Retinoic acid delays transcription of human retinal pigment neuroepithelium marker genes in ARPE-19 cells

Neuroreport · 2000 · Vol. 11(7) · pp. 1571–1579
Sara W. LazarGeorge W. BushRandy L. GollubGregory L. FricchioneBert P. M. JanssenAugust F. DeutmanCarola A. G. G. Driessen

Abstract

Meditation is a conscious mental process that induces a set of integrated physiologic changes termed the relaxation response. Functional magnetic resonance imaging (fMRI) was used to identify and characterize the brain regions that are active during a simple form of meditation. Significant (p<10(-7)) signal increases were observed in the group-averaged data in the dorsolateral prefrontal and parietal cortices, hippocampus/parahippocampus, temporal lobe, pregenual anterior cingulate cortex, striatum, and pre- and post-central gyri during meditation. Global fMRI signal decreases were also noted, although these were probably secondary to cardiorespiratory changes that often accompany meditation. The results indicate that the practice of meditation activates neural structures involved in attention and control of the autonomic nervous system.

Retinal Development and DisordersCircadian rhythm and melatoninStress Responses and CortisolRetinoic acidRetinal pigment epitheliumRetinalCellular differentiationBiologyTretinoinRetinoic acid receptor betaMolecular biologyRetinoic acid-inducible orphan G protein-coupled receptorCell biology

MeSH terms

AdultAmygdalaArousalAttentionBasal GangliaBrain MappingFemaleFrontal LobeHippocampusHumansMaleMesencephalonMiddle AgedRespirationRest
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References
A wakeful hypometabolic physiologic state
American Journal of Physiology-Legacy Content · 1971 · 594 citations
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