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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Natural-scene-based Steady-state Visual Evoked Potentials Reveal Effects of Short-term Monocular Deprivation
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Natural-scene-based Steady-state Visual Evoked Potentials Reveal Effects of Short-term Monocular Deprivation

机译:基于天然场景的稳态视觉诱发电位揭示了短期单眼剥夺的影响

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Ocular dominance plasticity beyond the critical period has been demonstrated in adult humans in recent investigations of short-term monocular deprivation (MD). To our knowledge, all previous research adopted non-natural synthetic stimuli in testing perceptual ocular dominance before and after the MD. However, it is recognized that complex natural stimuli may engage cortical mechanisms substantially different from simple synthetic stimuli. Therefore, it remains largely unknown whether reshaping of ocular dominance following MD could be observed during perception of natural scene stimuli without conspicuous interocular competition. Here we used the steady-state visual evoked potential (SSVEP) technique to measure the ocular-specific neural effects of MD with natural scene stimuli where the two eyes' images were tagged with different frequencies. Two hours of MD boosted the neural gain for the deprived eye. During the course of MD, the SSVEP amplitude ratio for the deprived eye compared to the non-deprived eye increased significantly over time, indicating a progressive increase of neural gain for the deprived eye. These findings demonstrate that the effects of short-term MD can manifest when viewing natural scenes, providing a natural case in support of the homeostatic compensation theory of MD. Our work also indicates that the technique of natural-scene-based SSVEP could be particularly useful for future work exploring the neural dynamics during adaptation to natural stimuli. (C) 2020 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:在近期对短期单眼剥夺(MD)的成人人类中,在成人人类中证明了超出关键时期的眼部优势可塑性。据我们所知,所有先前的研究都采用了在MD之前和之后的测试感知眼部统治中的非天然合成刺激。然而,认识到,复杂的天然刺激可以从简单的合成刺激接合基本上不同的皮质机制。因此,它仍然很大程度上未知是否可以在没有显着的共聚竞赛的情况下观察到MD后的眼部优势的重塑。在这里,我们使用稳态视觉诱发电位(SSVEP)技术来测量MD的眼镜特异性神经效果,其中两个眼睛图像被标记为不同的频率。两个小时的MD推动了剥夺眼睛的神经利益。在MD过程中,与未被剥夺的眼睛相比,被剥夺眼睛的SSVEP振幅比随着时间的推移显着增加,表明剥夺眼睛的神经增益的逐步增加。这些发现表明,在观察自然场景时,短期MD的影响可以表现出自然场景,以支持MD的稳态补偿理论。我们的工作也表明,基于自然场景的SSVEP技术对于在适应自然刺激期间探索神经动力学的未来工作可能特别有用。 (c)2020年度IBRO。 elsevier有限公司出版。保留所有权利。

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