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低伽马范围内的个体共振频率与认知处理速度

Individual Resonant Frequencies at Low-Gamma Range and Cognitive Processing Speed.

作者信息

Parciauskaite Vykinta, Pipinis Evaldas, Voicikas Aleksandras, Bjekic Jovana, Potapovas Mindaugas, Jurkuvenas Vytautas, Griskova-Bulanova Inga

机构信息

Institute of Biosciences, Life Sciences Centre, Vilnius University, Sauletekio ave 7, LT-10257 Vilnius, Lithuania.

Human Neuroscience Group, Institute for Medical Research, University of Belgrade, Dr Subotica 4, 11000 Belgrade, Serbia.

出版信息

J Pers Med. 2021 May 23;11(6):453. doi: 10.3390/jpm11060453.

Abstract

Brain electrophysiological activity within the low gamma frequencies (30-80 Hz) has been proposed to reflect information encoding and transfer processes. The 40-Hz auditory steady-state response (40-Hz ASSR) is frequently discussed in relation to changed cognitive processing in neuropsychiatric disorders. However, the relationship between ASSRs and cognitive functioning still remains unclear. Most of the studies assessed the single frequency ASSR, while the individual resonance frequency in the gamma range (30-60 Hz), also called individual gamma frequency (IGF), has received limited attention thus far. Nevertheless, IGF potentially might better reflect individual network characteristics than standardly utilized 40-Hz ASSRs. Here, we focused on the processing speed across different types of cognitive tasks and explored its relationship with responses at 40 Hz and at IGFs in an attempt to uncover how IGFs relate to certain aspects of cognitive functioning. We show that gamma activity is related to the performance speed on complex cognitive task tapping planning and problem solving, both when responses at 40 Hz and at IGFs were evaluated. With the individualized approach, the observed associations were found to be somewhat stronger, and the association seemed to primarily reflect individual differences in higher-order cognitive processing. These findings have important implications for the interpretation of gamma activity in neuropsychiatric disorders.

摘要

低伽马频率(30 - 80赫兹)范围内的脑电生理活动被认为反映了信息编码和传递过程。40赫兹听觉稳态反应(40-Hz ASSR)常与神经精神疾病中认知加工的变化相关讨论。然而,ASSR与认知功能之间的关系仍不明确。大多数研究评估的是单频ASSR,而伽马范围(30 - 60赫兹)内的个体共振频率,也称为个体伽马频率(IGF),迄今为止受到的关注有限。尽管如此,与标准使用的40-Hz ASSR相比,IGF可能更能反映个体网络特征。在此,我们关注不同类型认知任务的处理速度,并探讨其与40赫兹和IGF反应的关系,试图揭示IGF与认知功能某些方面的关联。我们发现,当评估40赫兹和IGF的反应时,伽马活动与涉及计划和解决问题的复杂认知任务的执行速度相关。采用个体化方法时,观察到的关联似乎更强,且这种关联似乎主要反映了高阶认知加工中的个体差异。这些发现对神经精神疾病中伽马活动的解释具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44e5/8224604/44d76983ad9b/jpm-11-00453-g001.jpg

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