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Spectral properties of induced and evoked gamma oscillations in human early visual cortex to moving and stationary stimuli.

机译:人类早期视觉皮层对运动和静止刺激的诱发和诱发伽马振荡的光谱特性。

摘要

In two experiments, magnetoencephalography (MEG) was used to investigate the effects of motion on gamma oscillations in human early visual cortex. When presented centrally, but not peripherally, stationary and moving gratings elicited several evoked and induced response components in early visual cortex. Time-frequency analysis revealed two nonphase locked gamma power increases-an initial, rapidly adapting response and one sustained throughout stimulus presentation and varying in frequency across observers from 28 to 64 Hz. Stimulus motion raised the sustained gamma oscillation frequency by a mean of approximately 10 Hz. The largest motion-induced frequency increases were in those observers with the lowest gamma response frequencies for stationary stimuli, suggesting a possible saturation mechanism. Moderate gamma amplitude increases to moving versus stationary stimuli were also observed but were not correlated with the magnitude of the frequency increase. At the same site in visual cortex, sustained alpha/beta power reductions and an onset evoked response were observed, but these effects did not change significantly with the presence of motion and did not correlate with the magnitude of gamma power changes. These findings suggest that early visual areas encode moving and stationary percepts via activity at higher and lower gamma frequencies, respectively.
机译:在两个实验中,脑磁图(MEG)用于研究运动对人类早期视觉皮层中伽马振荡的影响。当集中显示而不是外围显示时,固定和移动的光栅会在早期的视觉皮层中引起一些诱发和诱发的反应成分。时频分析揭示了两个无锁相的伽马功率增加-初始的快速适应性响应和一个持续的整个刺激表现,观察者的频率从28 Hz到64 Hz变化。刺激运动使持续的伽马振荡频率平均提高了约10 Hz。运动引起的频率增加最大的是那些对静止刺激具有最低伽马响应频率的观察者,表明可能存在饱和机制。还观察到相对于静止刺激的适度伽玛振幅增加,但与频率增加的幅度无关。在视觉皮层的同一部位,观察到持续的α/β功率降低和诱发的起搏反应,但是这些效应在运动的情况下并没有显着变化,并且与伽马功率变化的幅度无关。这些发现表明,早期的视觉区域分别通过在较高和较低的伽玛频率下的活动来编码运动和静止感知。

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