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视觉-动眼神经相互作用促进知觉学习的巩固。

Visual-oculomotor interactions facilitate consolidation of perceptual learning.

作者信息

Klorfeld-Auslender Shira, Censor Nitzan

机构信息

Sagol School of Neuroscience, Tel Aviv University, Tel Aviv, Israel.

School of Psychological Sciences, Tel Aviv University, Tel Aviv, Israel.

出版信息

J Vis. 2019 Jun 3;19(6):11. doi: 10.1167/19.6.11.

Abstract

Visual skill learning is commonly considered a manifestation of brain plasticity. Following encoding, consolidation of the skill may result in between-session performance gains. A great volume of studies have demonstrated that during the offline consolidation interval, the skill is susceptible to external inputs that modify the preformed representation of the memory, affecting future performance. However, while basic visual perceptual learning is thought to be mediated by sensory brain regions or their higher-order readout pathways, the possibility of visual-oculomotor interactions affecting the consolidation interval and reshaping visual learning remains uncharted. Motivated by findings mapping connections between oculomotor behavior and visual performance, we examined whether visual consolidation can be facilitated by visual-oculomotor interactions. To this aim, we paired reactivation of an oculomotor memory with consolidation of a typical visual texture discrimination task. Importantly, the oculomotor memory was encoded by learning of the pure motor component of the movement, removing visual cues. When brief reactivation of the oculomotor memory preceded the visual task, visual gains were substantially enhanced compared with those achieved by visual practice per se and were strongly related to the magnitude of oculomotor gains, suggesting that the brain utilizes oculomotor memory to enhance basic visual perception.

摘要

视觉技能学习通常被认为是大脑可塑性的一种表现。在编码之后,技能的巩固可能会导致不同训练阶段之间的表现提升。大量研究表明,在离线巩固期间,技能容易受到外部输入的影响,这些外部输入会改变预先形成的记忆表征,从而影响未来的表现。然而,虽然基本视觉感知学习被认为是由感觉脑区或其高阶读出通路介导的,但视觉-动眼神经相互作用影响巩固期并重塑视觉学习的可能性仍不明确。受动眼神经行为与视觉表现之间映射联系的研究结果启发,我们研究了视觉-动眼神经相互作用是否能够促进视觉巩固。为此,我们将动眼神经记忆的重新激活与典型视觉纹理辨别任务的巩固相结合。重要的是,动眼神经记忆是通过学习运动的纯运动成分进行编码的,去除了视觉线索。当在视觉任务之前短暂重新激活动眼神经记忆时,与单纯视觉练习相比,视觉能力显著增强,并且与动眼神经能力的增强程度密切相关,这表明大脑利用动眼神经记忆来增强基本视觉感知。

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