首页> 外文期刊>Clinical EEG and neuroscience: official journal of the EEG and Clinical Neuroscience Society (ENCS) >Simultaneous EEG/fMRI analysis of the resonance phenomena in steady-state visual evoked responses.
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Simultaneous EEG/fMRI analysis of the resonance phenomena in steady-state visual evoked responses.

机译:稳态视觉诱发反应中共振现象的同时EEG / fMRI分析。

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The stability of the steady-state visual evoked potentials (SSVEPs) across trials and subjects makes them a suitable tool for the investigation of the visual system. The reproducible pattern of the frequency characteristics of SSVEPs shows a global amplitude maximum around 10 Hz and additional local maxima around 20 and 40 Hz, which have been argued to represent resonant behavior of damped neuronal oscillators. Simultaneous electroencephalogram/functional magnetic resonance imaging (EEG/fMRI) measurement allows testing of the resonance hypothesis about the frequency-selective increases in SSVEP amplitudes in human subjects, because the total synaptic activity that is represented in the fMRI-Blood Oxygen Level Dependent (fMRI-BOLD) response would not increase but get synchronized at the resonance frequency. For this purpose, 40 healthy volunteers were visually stimulated with flickering light at systematically varying frequencies between 6 and 46 Hz, and the correlations between SSVEP amplitudes and the BOLD responses were computed. The SSVEP frequency characteristics of all subjects showed 3 frequency ranges with an amplitude maximum in each of them, which roughly correspond to alpha, beta and gamma bands of the EEG. The correlation maps between BOLD responses and SSVEP amplitude changes across the different stimulation frequencies within each frequency band showed no significant correlation in the alpha range, while significant correlations were obtained in the primary visual area for the beta and gamma bands. This non-linear relationship between the surface recorded SSVEP amplitudes and the BOLD responses of the visual cortex at stimulation frequencies around the alpha band supports the view that a resonance at the tuning frequency of the thalamo-cortical alpha oscillator in the visual system is responsible for the global amplitude maximum of the SSVEP around 10 Hz. Information gained from the SSVEP/fMRI analyses in the present study might be extrapolated to the EEG/fMRI analysis of the transient event-related potentials (ERPs) in terms of expecting more reliable and consistent correlations between EEG and fMRI responses, when the analyses are carried out on evoked or induced oscillations (spectral perturbations) in separate frequency bands instead of the time-domain ERP peaks.
机译:跨试验和受试者的稳态视觉诱发电位(SSVEP)的稳定性使其成为研究视觉系统的合适工具。 SSVEPs的频率特性的可再现模式显示出10 Hz附近的整体振幅最大值以及20和40 Hz附近的附加局部最大值,这被认为代表了阻尼神经元振荡器的共振行为。同时进行脑电图/功能磁共振成像(EEG / fMRI)测量可以测试关于人类受试者SSVEP振幅的频率选择性增加的共振假设,因为以fMRI-血氧水平依赖性(fMRI)表示的总突触活性-BOLD)响应不会增加,但会在共振频率下同步。为了这个目的,用闪烁的光以40到6 Hz的系统变化频率视觉刺激40名健康志愿者,并计​​算了SSVEP振幅和BOLD反应之间的相关性。所有受试者的SSVEP频率特征均显示3个频率范围,每个频率范围均具有最大振幅,大致对应于EEG的α,β和γ谱带。每个频段内不同刺激频率上BOLD响应和SSVEP幅度变化之间的相关图在alpha范围内没有显着相关,而在beta和gamma频段的主要视觉区域中却获得了显着相关。表面记录的SSVEP振幅和视觉皮层在alpha波段周围的刺激频率下的BOLD响应之间的这种非线性关系支持这样的观点,即视觉系统中的丘脑皮层α振荡器的调谐频率下的共振导致SSVEP的最大振幅最大值约为10 Hz。在本研究中,从SSVEP / fMRI分析中获得的信息可能会外推到瞬时事件相关电位(ERP)的EEG / fMRI分析中,因为期望在分析时脑电图与fMRI反应之间具有更可靠,更一致的相关性。在单独的频带中而不是在时域ERP峰值上,在诱发或诱发的振荡(频谱扰动)上执行。

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