| Literature DB >> 24671068 |
Sven C Mueller1, Brian R Cornwell2, Christian Grillon3, Jessica Macintyre4, Elena Gorodetsky5, David Goldman6, Daniel S Pine4, Monique Ernst4.
Abstract
Although the monoamine oxidase-A (MAOA) gene has been linked to spatial learning and memory in animal models, convincing evidence in humans is lacking. Performance on an ecologically-valid, virtual computer-based equivalent of the Morris Water Maze task was compared between 28 healthy males with the low MAOA transcriptional activity and 41 healthy age- and IQ-matched males with the high MAOA transcriptional activity. The results revealed consistently better performance (reduced heading error, shorter path length, and reduced failed trials) for the high MAOA activity individuals relative to the low activity individuals. By comparison, groups did not differ on pre-task variables or strategic measures such as first-move latency. The results provide novel evidence of MAOA gene involvement in human spatial navigation using a virtual analogue of the Morris Water Maze task.Entities:
Keywords: Gene; Learning; Monoamine-oxidase; Spatial memory; Spatial navigation; Virtual maze
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Year: 2014 PMID: 24671068 PMCID: PMC4548810 DOI: 10.1016/j.bbr.2014.03.025
Source DB: PubMed Journal: Behav Brain Res ISSN: 0166-4328 Impact factor: 3.332