Epilepsy Center Frankfurt Rhine-Main, Center of Neurology and Neurosurgery, Goethe University, Frankfurt am Main, Germany.
Ernst Strüngmann Institute (ESI) for Neuroscience in Cooperation with Max Planck Society, Frankfurt, Germany.
Eur J Neurosci. 2022 Jun;55(11-12):3010-3024. doi: 10.1111/ejn.15489. Epub 2021 Nov 18.
Sampling of information is thought to be an important aspect of explorative behaviour. Evidence for it has been gained in behavioural assessments of a variety of overt and covert cognitive domains, including sensation, attention, memory, eye movements and dexterity. A common aspect across many findings is that sampling tends to exhibit a rhythmicity at low frequencies (theta, 4-8 Hz; alpha, 9-12 Hz). Neurophysiological investigations in a wide range of species, including rodents, non-human primates and humans have demonstrated the presence of sampling related neural oscillations in a number of brain areas ranging from early sensory cortex, hippocampus to high-level cognitive areas. However, to assess whether rhythmic sampling represents a general aspect of exploratory behaviour one must critically evaluate the task parameters, and their potential link with neural oscillations. Here we focus on sampling during attentive vision to present an overview on the experimental conditions that are used to investigate rhythmic sampling and associated oscillatory brain activity in this domain. This review aims to (1) provide guidelines to efficiently quantify behavioural rhythms, (2) compare results from human and non-human primate studies and (3) argue that the underlying neural mechanisms of sampling can co-occur in both sensory and high-level areas.
信息采样被认为是探索性行为的一个重要方面。在对各种显性和隐性认知领域(包括感觉、注意力、记忆、眼球运动和灵巧性)的行为评估中,已经获得了支持这一观点的证据。许多发现的一个共同特点是,采样往往表现出低频的节律性(θ,4-8 Hz;α,9-12 Hz)。在包括啮齿动物、非人类灵长类动物和人类在内的广泛物种中的神经生理学研究表明,在从早期感觉皮层、海马体到高级认知区域的许多大脑区域中,都存在与采样相关的神经振荡。然而,要评估节律性采样是否代表探索性行为的一个普遍方面,必须批判性地评估任务参数及其与神经振荡的潜在联系。在这里,我们专注于注意力视觉期间的采样,以提供一个概述,介绍用于研究该领域中节律性采样和相关振荡脑活动的实验条件。本综述旨在:(1)提供有效量化行为节律的指南;(2)比较人类和非人类灵长类动物研究的结果;(3)认为采样的潜在神经机制可以同时发生在感觉和高级区域中。