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Winning versus losing during gambling and its neural correlates

机译:在赌博期间赢得与失败以及其神经相关

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Humans often make decisions which maximize an internal utility function. For example, humans often maximize their expected reward when gambling and this is considered as a ???rational??? decision. However, humans tend to change their betting strategies depending on how they ???feel???. If someone has experienced a losing streak, they may ???feel??? that they are more likely to win on the next hand even though the odds of the game have not changed. That is, their decisions are driven by their emotional state. In this paper, we investigate how the human brain responds to wins and losses during gambling. Using a combination of local field potential recordings in human subjects performing a financial decision-making task, spectral analyses, and non-parametric cluster statistics, we investigated whether neural responses in different cognitive and limbic brain areas differ between wins and losses after decisions are made. In eleven subjects, the neural activity modulated significantly between win and loss trials in one brain region: the anterior insula (p = 0.01). In particular, gamma activity (30???70 Hz) increased in the anterior insula when subjects just realized that they won. Modulation of metabolic activity in the anterior insula has been observed previously in functional magnetic resonance imaging studies during decision making and when emotions are elicited. However, our study is able to characterize temporal dynamics of electrical activity in this brain region at the millisecond resolution while decisions are made and after outcomes are revealed.
机译:人类经常做出最大化内部实用功能的决定。例如,人类经常在赌博时最大化他们的预期奖励,这被认为是一个???的理性???决定。然而,人类倾向于改变他们的赌注策略,这取决于它们的感觉???。如果有人经历过失去的连胜,他们可能会感觉到???即使游戏的几率没有改变,它们也更有可能赢得下一个手。也就是说,他们的决定是由他们的情绪状态驱动的。在本文中,我们调查人类大脑在赌博过程中如何应对胜利和损失。使用人类受试者的当地现场潜在记录的组合执行财务决策任务,频谱分析和非参数簇统计,我们研究了不同认知和肢体大脑区域的神经反应是否在决定后赢得胜利和损失之间的不同。在11个受试者中,神经活动在一个脑区域的丧失试验中显着调节:前肠(P = 0.01)。特别是,当受试者意识到他们赢得时,γ活性(30 ??? 70 Hz)增加了前肠道。在决策过程中,先前在功能磁共振成像研究中观察到前肠内的代谢活性的调节,并且当引起情绪时。然而,我们的研究能够以毫秒分辨率在该大脑区域中的电气活动的时间动态表征在毫秒的分辨率,而作出决定并在结果之后。

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