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Good Vibrations: Cross-frequency Coupling in the Human Nucleus Accumbens during Reward Processing

机译:良好的振动:奖励处理过程中人核伏隔的交叉频率耦合

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摘要

The nucleus accumbens is critical for reward-guided learning and decision-making. It is thought to "gate" the flow of a diverse range of information (e.g., rewarding, aversive, and novel events) from limbic afferents to basal ganglia outputs. Gating and information encoding may be achieved via cross-frequency coupling, in which bursts of high-frequency activity occur preferentially during specific phases of slower oscillations. We examined whether the human nucleus accumbens engages such a mechanism by recording electrophysiological activity directly from the accumbens of human patients under-rngoing deep brain stimulation surgery. Oscillatory activity in the gamma (40-80 Hz) frequency range was synchronized with the phase of simultaneous alpha (8-12 Hz) waves. Further, losing and winning small amounts of money elicited relatively increased gamma oscillation power prior to and following alpha troughs, respectively. Gamma-alpha synchronization may reflect an electrophysiological gating mechanism in the human nucleus accumbens, and the phase differences in gamma-alpha coupling may reflect a reward information coding scheme similar to phase coding.
机译:伏伏核对于奖励指导的学习和决策至关重要。据认为可以“控制”从边缘传入神经到基底神经节输出的各种信息流(例如,奖励,厌恶和新颖事件)。选通和信息编码可以通过跨频耦合来实现,其中高频活动的突发优先出现在较慢振荡的特定阶段。我们检查了人类伏隔核是否通过直接记录接受深部脑刺激手术的人类患者伏隔的电生理活动来参与这种机制。伽玛(40-80 Hz)频率范围内的振荡活动与同时的阿尔法(8-12 Hz)波的相位同步。此外,在阿尔法谷底之前和之后,损失和赢得少量金钱分别引起相对增加的伽马振荡能力。 γ-α同步可能反映人类伏隔核中的电生理门控机制,并且γ-α耦合中的相差可能反映类似于相编码的奖励信息编码方案。

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