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超越峰值——触觉时间辨别与体感皮层中的个体峰值频率不相关。

Beyond the Peak - Tactile Temporal Discrimination Does Not Correlate with Individual Peak Frequencies in Somatosensory Cortex.

作者信息

Baumgarten Thomas J, Schnitzler Alfons, Lange Joachim

机构信息

Institute of Clinical Neuroscience and Medical Psychology, Medical Faculty, University of Düsseldorf Düsseldorf, Germany.

出版信息

Front Psychol. 2017 Mar 22;8:421. doi: 10.3389/fpsyg.2017.00421. eCollection 2017.

Abstract

The human sensory systems constantly receive input from different stimuli. Whether these stimuli are integrated into a coherent percept or segregated and perceived as separate events, is critically determined by the temporal distance of the stimuli. This temporal distance has prompted the concept of temporal integration windows or perceptual cycles. Although this concept has gained considerable support, the neuronal correlates are still discussed. Studies suggested that neuronal oscillations might provide a neuronal basis for such perceptual cycles, i.e., the cycle lengths of alpha oscillations in visual cortex and beta oscillations in somatosensory cortex might determine the length of perceptual cycles. Specifically, recent studies reported that the peak frequency (the frequency with the highest spectral power) of alpha oscillations in visual cortex correlates with subjects' ability to discriminate two visual stimuli. In the present study, we investigated whether peak frequencies in somatosensory cortex might serve as the correlate of perceptual cycles in tactile discrimination. Despite several different approaches, we were unable to find a significant correlation between individual peak frequencies in the alpha- and beta-band and individual discrimination abilities. In addition, analysis of Bayes factor provided evidence that peak frequencies and discrimination thresholds are unrelated. The results suggest that perceptual cycles in the somatosensory domain are not necessarily to be found in the peak frequency, but in other frequencies. We argue that studies based solely on analysis of peak frequencies might thus miss relevant information.

摘要

人类的感觉系统不断接收来自不同刺激的输入。这些刺激是被整合为一个连贯的感知,还是被分离并被视为独立的事件,关键取决于刺激的时间间隔。这种时间间隔催生了时间整合窗口或感知周期的概念。尽管这一概念已获得相当多的支持,但其神经元相关机制仍在讨论之中。研究表明,神经元振荡可能为这种感知周期提供神经元基础,即视觉皮层中的阿尔法振荡周期长度和体感皮层中的贝塔振荡周期长度可能决定感知周期的长度。具体而言,最近的研究报告称,视觉皮层中阿尔法振荡的峰值频率(具有最高频谱功率的频率)与受试者区分两种视觉刺激的能力相关。在本研究中,我们调查了体感皮层中的峰值频率是否可能作为触觉辨别中感知周期的相关指标。尽管采用了几种不同的方法,但我们未能在阿尔法波段和贝塔波段的个体峰值频率与个体辨别能力之间找到显著相关性。此外,贝叶斯因子分析提供的证据表明峰值频率与辨别阈值无关。结果表明,体感领域的感知周期不一定存在于峰值频率中,而是存在于其他频率中。我们认为,仅基于峰值频率分析的研究可能会遗漏相关信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8538/5361566/c39680bf1161/fpsyg-08-00421-g001.jpg

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