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Low Frequency Steady-State Brain Responses Modulate Large Scale Functional Networks in a Frequency-Specific Means

机译:低频稳态脑响应以特定于频率的方式调制大规模功能网络

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摘要

Neural oscillations are essential for brain functions. Research has suggested that the frequency of neural oscillations is lower for more integrative and remote communications. In this vein, some resting-state studies have suggested that large scale networks function in the very low frequency range (<1 Hz). However, it is difficult to determine the frequency characteristics of brain networks because both resting-state studies and conventional frequency tagging approaches cannot simultaneously capture multiple large scale networks in controllable cognitive activities. In this preliminary study, we aimed to examine whether large scale networks can be modulated by task-induced low frequency steady-state brain responses (lfSSBRs) in a frequency-specific pattern. In a revised attention network test, the lfSSBRs were evoked in the triple network system and sensory-motor system, indicating that large scale networks can be modulated in a frequency tagging way. Furthermore, the inter-and intranetwork synchronizations as well as coherence were increased at the fundamental frequency and the first harmonic rather than at other frequency bands, indicating a frequency-specific modulation of information communication. However, there was no difference among attention conditions, indicating that lfSSBRs modulate the general attention state much stronger than distinguishing attention conditions. This study provides insights into the advantage and mechanism of lfSSBRs. More importantly, it paves a new way to investigate frequency-specific large scale brain activities. (C) 2015 Wiley Periodicals, Inc.
机译:神经振荡对于大脑功能至关重要。研究表明,对于更多的集成和远程通信,神经振荡的频率较低。因此,一些静止状态研究表明,大型网络在非常低的频率范围(<1 Hz)中起作用。但是,由于静息状态研究和常规频率标记方法都无法在可控的认知活动中同时捕获多个大型网络,因此很难确定大脑网络的频率特性。在这项初步研究中,我们旨在研究是否可以通过任务诱导的低频稳态脑反应(lfSSBRs)以特定于频率的模式来调制大规模网络。在修订的注意力网络测试中,lfSSBRs在三重网络系统和感觉运动系统中被诱发,表明大型网络可以通过频率标记的方式进行调制。此外,在基本频率和一次谐波而不是在其他频带上,网络间和网络内的同步以及相干性增加了,这表明信息通信的特定频率调制。但是,注意条件之间没有差异,表明lfSSBRs对一般注意状态的调节要比区分注意条件强得多。这项研究提供了对lfSSBRs的优势和机理的见解。更重要的是,它为研究特定于频率的大规模大脑活动开辟了一条新途径。 (C)2015威利期刊公司

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