Posts mit dem Label Exploration Behavior werden angezeigt. Alle Posts anzeigen
Posts mit dem Label Exploration Behavior werden angezeigt. Alle Posts anzeigen

Sonntag, 24. März 2013

Are fast explorers slow reactors? Linking personality type and anti-predator behaviour

Are fast explorers slow reactors? Linking personality type and anti-predator behaviour

  • Katherine A. Jones and 
  •  
  • Jean-Guy J. Godin; 2010


  • http://rspb.royalsocietypublishing.org/content/277/1681/625.full


    Abstract

    Response delays to predator attack may be adaptive, suggesting that latency to respond does not always reflect predator detection time, but can be a decision based on starvation–predation risk trade-offs. In birds, some anti-predator behaviours have been shown to be correlated with personality traits such as activity level and exploration. Here, we tested for a correlation between exploration behaviour and response latency time to a simulated fish predator attack in a fish species, juvenile convict cichlids (Amatitlania nigrofasciata). Individual focal fish were subjected to a standardized attack by a robotic fish predator while foraging, and separately given two repeated trials of exploration of a novel environment. We found a strong positive correlation between exploration and time taken to respond to the predator model. Fish that were fast to explore the novel environment were slower to respond to the predator. Our study therefore provides some of the first experimental evidence for a link between exploration behaviour and predator-escape behaviour. We suggest that different behavioural types may differ in how they partition their attention between foraging and anti-predator vigilance.


    Mittwoch, 13. März 2013

    Prefrontal and striatal dopaminergic genes predict individual differences in exploration and exploitation


    Prefrontal and striatal dopaminergic genes predict individual differences in exploration and exploitation
    Michael J Frank et al., 2009
    http://diyhpl.us/~bryan/papers2/neuro/Prefrontal%20and%20striatal%20dopaminergic%20genes%20predict%20individual%20differences%20in%20exploration%20and%20exploitation.pdf


    Abstract

    The basal ganglia support learning to exploit decisions that have yielded positive outcomes in the past. In contrast, limited evidence implicates the prefrontal cortex in the process of making strategic exploratory decisions when the magnitude of potential outcomes is unknown. Here we examine neurogenetic contributions to individual differences in these distinct aspects of motivated human behavior, using a temporal decision-making task and computational analysis. We show that two genes controlling striatal dopamine function, DARPP-32 (also called PPP1R1B) and DRD2, are associated with exploitative learning to adjust response times incrementally as a function of positive and negative decision outcomes. In contrast, a gene primarily controlling prefrontal dopamine function (COMT) is associated with a particular type of ‘directed exploration’, in which exploratory decisions are made in proportion to Bayesian uncertainty about whether other choices might produce outcomes that are better than the status quo. Quantitative model fits reveal that genetic factors modulate independent parameters of a reinforcement learning system.

    Sonntag, 10. März 2013

    Sources of Cognitive Exploration: Genetic Variation in the Prefrontal Dopamine System Predicts Openness/Intellect

    Sources of Cognitive Exploration: Genetic Variation in the Prefrontal Dopamine System Predicts Openness/Intellect
    Colin G DeYoung et al; 2012
    http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3143482/


    Abstract

    The personality trait Openness/Intellect reflects the tendency to be imaginative, curious, perceptive, artistic, and intellectual—all characteristics that involve cognitive exploration. Little is known about the biological basis of Openness/Intellect, but the trait has been linked to cognitive functions of prefrontal cortex, and the neurotransmitter dopamine plays a key role in motivation to explore. The hypothesis that dopamine is involved in Openness/Intellect was supported by examining its association with two genes that are central components of the prefrontal dopaminergic system. In two demographically different samples (children: N = 608; adults: N = 214), variation in the dopamine D4 receptor gene (DRD4) and the catechol-O-methyltransferase gene (COMT) predicted Openness/Intellect, as main effects in the child sample and in interaction in adults.