Mockevičius Aurimas, Šveistytė Kristina, Griškova-Bulanova Inga
Institute of Biosciences, Life Sciences Centre, Vilnius University, Saulėtekio av. 7, LT-10257 Vilnius, Lithuania.
Brain Sci. 2023 May 12;13(5):792. doi: 10.3390/brainsci13050792.
In recent years, the concept of individualized measures of electroencephalographic (EEG) activity has emerged. Gamma-band activity plays an important role in many sensory and cognitive processes. Thus, peak frequency in the gamma range has received considerable attention. However, peak or individual gamma frequency (IGF) is rarely used as a primary measure of interest; consequently, little is known about its nature and functional significance. With this review, we attempt to comprehensively overview available information on the functional properties of peak gamma frequency, addressing its relationship with certain processes and/or modulation by various factors. Here, we show that IGFs seem to be related to various endogenous and exogenous factors. Broad functional aspects that are related to IGF might point to the differences in underlying mechanisms. Therefore, research utilizing different types of stimulation for IGF estimation and covering several functional aspects in the same population is required. Moreover, IGFs span a wide range of frequencies (30-100 Hz). This could be partly due to the variability of methods used to extract the measures of IGF. In order to overcome this issue, further studies aiming at the optimization of IGF extraction would be greatly beneficial.
近年来,脑电图(EEG)活动个体化测量的概念已经出现。γ波段活动在许多感觉和认知过程中发挥着重要作用。因此,γ范围内的峰值频率受到了相当多的关注。然而,峰值或个体γ频率(IGF)很少被用作主要的研究指标;因此,人们对其性质和功能意义知之甚少。通过这篇综述,我们试图全面概述关于峰值γ频率功能特性的现有信息,探讨其与某些过程的关系以及各种因素对其的调节作用。在此,我们表明IGF似乎与各种内源性和外源性因素有关。与IGF相关的广泛功能方面可能表明潜在机制存在差异。因此,需要开展利用不同类型刺激来估计IGF并涵盖同一人群多个功能方面的研究。此外,IGF涵盖了广泛的频率范围(30 - 100赫兹)。这可能部分归因于用于提取IGF测量值的方法的变异性。为了克服这个问题,旨在优化IGF提取的进一步研究将大有裨益。