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Hippocampal theta phases organize the reactivation of large-scale electrophysiological representations during goal-directed navigation

机译:海马θ阶段在目标定向导航期间组织重新激活大规模电生理表示的重新激活

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摘要

Humans are adept in simultaneously following multiple goals, but the neural mechanisms for maintaining specific goals and distinguishing them from other goals are incompletely understood. For short time scales, working memory studies suggest that multiple mental contents are maintained by theta-coupled reactivation, but evidence for similar mechanisms during complex behaviors such as goal-directed navigation is scarce. We examined intracranial electroencephalography recordings of epilepsy patients performing an object-location memory task in a virtual environment. We report that large-scale electrophysiological representations of objects that cue for specific goal locations are dynamically reactivated during goal-directed navigation. Reactivation of different cue representations occurred at stimulus-specific hippocampal theta phases. Locking to more distinct theta phases predicted better memory performance, identifying hippocampal theta phase coding as a mechanism for separating competing goals. Our findings suggest shared neural mechanisms between working memory and goal-directed navigation and provide new insights into the functions of the hippocampal theta rhythm.
机译:人类在多个目标之后同时擅长,但是要保持特定目标并将其区分离其他目标的神经机制是不完全理解的。对于短时间尺度,工作记忆研究表明,通过耦合耦合的重新激活维持多种心理内容,但在复杂行为期间类似机制的证据是稀缺的。我们检查了在虚拟环境中执行物体位置记忆任务的癫痫患者的颅内脑电图记录。我们报告说,在目标定向导航期间动态重新激活特定目标位置的物体的大规模电生理学表现。不同的提示表示的再激活发生在刺激特异性海马θ阶段。锁定更明显的θpps预测更好的内存性能,识别海马Theta相位编码作为分离竞争目标的机制。我们的研究结果建议了工作记忆与目标导航之间的共享神经机制,并为海马θ节奏的功能提供新的见解。

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