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Theta 相位同步是将人类联想记忆黏合在一起的胶合剂。

Theta Phase Synchronization Is the Glue that Binds Human Associative Memory.

机构信息

School of Psychology, University of Birmingham, Edgbaston, Birmingham B15 2TT, UK.

School of Psychology, University of Birmingham, Edgbaston, Birmingham B15 2TT, UK.

出版信息

Curr Biol. 2017 Oct 23;27(20):3143-3148.e6. doi: 10.1016/j.cub.2017.09.001. Epub 2017 Oct 5.

Abstract

Episodic memories are information-rich, often multisensory events that rely on binding different elements [1]. The elements that will constitute a memory episode are processed in specialized but distinct brain modules. The binding of these elements is most likely mediated by fast-acting long-term potentiation (LTP), which relies on the precise timing of neural activity [2]. Theta oscillations in the hippocampus orchestrate such timing as demonstrated by animal studies in vitro [3, 4] and in vivo [5, 6], suggesting a causal role of theta activity for the formation of complex memory episodes, but direct evidence from humans is missing. Here, we show that human episodic memory formation depends on phase synchrony between different sensory cortices at the theta frequency. By modulating the luminance of visual stimuli and the amplitude of auditory stimuli, we directly manipulated the degree of phase synchrony between visual and auditory cortices. Memory for sound-movie associations was significantly better when the stimuli were presented in phase compared to out of phase. This effect was specific to theta (4 Hz) and did not occur in slower (1.7 Hz) or faster (10.5 Hz) frequencies. These findings provide the first direct evidence that episodic memory formation in humans relies on a theta-specific synchronization mechanism.

摘要

情景记忆是信息丰富的,通常是多感官事件,依赖于将不同的元素结合在一起[1]。构成记忆情节的元素在专门但不同的大脑模块中进行处理。这些元素的结合很可能是由快速作用的长时程增强(LTP)介导的,而这依赖于神经活动的精确时间[2]。海马体中的θ振荡协调了这种时间,这已在动物的体外[3,4]和体内[5,6]研究中得到证实,表明θ活动对于复杂记忆情节的形成具有因果作用,但人类缺乏直接证据。在这里,我们表明人类情景记忆的形成依赖于不同感觉皮层在θ频带的相位同步。通过调制视觉刺激的亮度和听觉刺激的幅度,我们直接操纵了视觉和听觉皮层之间的相位同步程度。与声音电影关联的记忆在刺激同相时明显优于异相时。这种效果是特定于θ(4 Hz)的,而在较慢(1.7 Hz)或较快(10.5 Hz)频率下则不会发生。这些发现提供了第一个直接证据,表明人类情景记忆的形成依赖于θ特异性同步机制。

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