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首页> 外文期刊>Neuroscience Research: The Official Journal of the Japan Neuroscience Society >Effects of temporal gaps between successive fixation targets on discrimination performance and evoked brain activity.
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Effects of temporal gaps between successive fixation targets on discrimination performance and evoked brain activity.

机译:连续固定目标之间的时间间隙对辨别能力和诱发的大脑活动的影响。

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摘要

Planning and executing of action in real-world conditions require continuous sensory input from many modalities. At the same time, sensory functions depend on reafferent and efference-copy information flow as imposed by motor actions. We studied how a specific oculomotor task influences afferent visual processing. Twenty healthy adults performed visually guided saccades. Between the offset of a fixation light and the onset of a new visual target a temporal gap of a duration of about 200 ms was introduced. This time structure is known from previous studies to elicit saccades at express latencies. In a control condition, 'no gap' was used. During eye movements one of four visual patterns with different orientations was presented, triggered by the horizontal electro-oculogram. We analyzed discrimination performance and the simultaneously recorded multichannel EEG activity. In the gap condition, shorter saccadic latencies were accompanied by significant more correct perceptual judgments. However, brain activity, as quantified by global field power, evoked component latency and topographical descriptors (centers of gravity or centroids) were not affected by the gap. This contrasts the notion that parieto-occipital areas are the most important sites of sensorimotor integration. Furthermore, the presence of a visual masking stimulus did not degrade discrimination performance, demonstrating that local retinal afterimages were not used for perceptual decisions. We conclude that intra-saccadic visual processing is influenced by pre-saccadic events. Under the short-time constraints prevalent in the saccadic task, fixation target cues are not only used for motor planning but also influence the visibility of visual patterns presented during the eye movement.
机译:在现实环境中计划和执行动作需要来自多种方式的持续感官输入。同时,感觉功能取决于运动动作所施加的反作用和信息复制信息流。我们研究了特定的动眼任务如何影响传入的视觉处理。二十名健康的成年人进行了视觉引导的扫视。在固定光的偏移和新视觉目标的出现之间,引入了约200 ms持续时间的时间间隙。从以前的研究中可以知道这种时间结构会引起明显的潜伏期扫视。在对照条件下,使用“无间隙”。在眼动过程中,由水平眼动眼图触发了具有不同方向的四个视觉模式之一。我们分析了歧视表现和同时记录的多通道脑电图活动。在间隙条件下,较短的眼跳潜伏期伴随着明显更正确的知觉判断。但是,大脑活动(由全球野外力量量化),诱发的组件潜伏期和地形描述符(重心或质心)不受间隙影响。这与顶枕区域是感觉运动整合的最重要部位的观点形成对比。此外,视觉掩盖刺激的存在不会降低辨别性能,表明局部视网膜残像未用于感知决策。我们得出结论,-内视觉处理受s前事件影响。在视听任务中普遍存在的短时限制下,注视目标提示不仅用于运动计划,而且还会影响眼睛运动过程中呈现的视觉模式的可见性。

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