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首页> 外文期刊>Frontiers in Psychology >The Effect of Alpha tACS on the Temporal Resolution of Visual Perception
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The Effect of Alpha tACS on the Temporal Resolution of Visual Perception

机译:Alpha TAC对视觉感知的时间分辨率的影响

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摘要

We experience the world around us as a smooth and continuous flow. However, there is growing evidence that the stream of sensory inputs is not elaborated in an analog way but is instead organized in discrete or quasi-discrete temporal processing windows. These discrete windows are suggested to depend on rhythmic neural activity in the alpha (and theta) frequency bands, which in turn reflect changes in neural activity within, and coupling between, cortical areas. In the present study we investigated a possible causal link between oscillatory brain activity in the alpha range (8-12 Hz) and the temporal resolution of visual perception, which determines whether sequential stimuli are perceived as distinct entities or combined into a single representation. To this aim we employed a two-flash fusion task while participants received focal transcranial Alternating Current Stimulation (tACS) in extra-striate visual regions including V5/MT of the right hemisphere. Our findings show that 10-Hz tACS, as opposed to a placebo (sham tACS), reduces the temporal resolution of perception inducing participants to integrate the two stimuli into a unique percept more often. This pattern was observed only in the contralateral visual hemifield, providing further support for a specific effect of alpha tACS. The present findings corroborate the idea of a causal link between temporal windows of integration/segregation and oscillatory alpha activity in V5/MT and extra-striate visual regions. They also stimulate future research on possible ways to shape the temporal resolution of human vision in an individualized manner.
机译:我们在我们周围体验到我们平稳和连续的流动。然而,存在日益增长的证据表明,没有以模拟方式详细阐述感觉输入流,而是以离散或准离散的时间处理窗口组织。建议这些离散窗口依赖于α(和θ)频带中的节奏神经活动,这反映了内部神经活动的变化,并耦合皮质区域。在本研究中,我们研究了α范围(8-12 Hz)中的振荡脑活动和视觉感知的时间分辨率之间的可能因果关系,这决定了顺序刺激是否被认为是不同的实体或组合成单个表示。为此目的,我们采用了一个双闪融合任务,而参与者在包括右半球的v5 / mt的v5 / mt的局部视觉区域中收到焦颅交流刺激(TAC)。我们的研究结果表明,与安慰剂(假TAC)相反,10 Hz TAC减少了感知诱导参与者的时间分辨率,以更频繁地将两种刺激整合到独特的感知。仅在对侧视觉升降中观察到该模式,从而进一步支持αTAC的特定效果。本研究结果证实了v5 / mt和跨越视觉区域的集成/分离和振荡α活动的时间窗口之间的因果关系的思想。他们还刺激了以个人方式塑造人类视野的可能方法的未来研究。

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