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首页> 外文期刊>International journal of psychophysiology: official journal of the International Organization of Psychophysiology >The impact of luminance on tonic and phasic pupillary responses to sustained cognitive load
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The impact of luminance on tonic and phasic pupillary responses to sustained cognitive load

机译:亮度对滋补和阶段瞳孔反应对持续认知载荷的影响

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摘要

Pupillary reactions independent of light conditions have been linked to cognition for a long time. However, the light conditions can impact the cognitive pupillary reaction. Previous studies underlined the impact of luminance on pupillary reaction, but it is still unclear how luminance modulates the sustained and transient components of pupillary reaction - tonic pupil diameter and phasic pupil response. In the present study, we investigated the impact of the luminance on these two components under sustained cognitive load. Fourteen participants performed a novel working memory task combining mathematical computations with a classic n-back task. We studied both tonic pupil diameter and phasic pupil response under low (1-back) and high (2-back) working memory load and two luminance levels (gray and white). We found that the impact of working memory load on the tonic pupil diameter was modulated by the level of luminance, the increase in tonic pupil diameter with the load being larger under lower luminance. In contrast, the smaller phasic pupil response found under high load remained unaffected by luminance. These results showed that luminance impacts the cognitive pupillary reaction - tonic pupil diameter (phasic pupil response) being modulated under sustained (respectively, transient) cognitive load. These findings also support the relationship between the locus-coeruleus system, presumably functioning in two firing modes - tonic and phasic - and the pupil diameter. We suggest that the tonic pupil diameter tracks the tonic activity of the locus-coeruleus while phasic pupil response reflects its phasic activity. Besides, the designed novel cognitive paradigm allows the simultaneous manipulation of sustained and transient components of the cognitive load and is useful for dissociating the effects on the tonic pupil diameter and phasic pupil response. (C) 2016 Elsevier B.V. All rights reserved.
机译:瞳孔反应无关的瞳孔反应已经与认知相连了很长时间。然而,光条件会影响认知瞳孔反应。以前的研究强调了亮度对瞳孔反应的影响,但尚不清楚亮度调节瞳孔反应的持续和瞬态成分 - 滋补瞳孔直径和序光瞳孔反应。在本研究中,我们在持续认知载荷下调查了亮度对这两种组分的影响。十四名参与者执行了一种新颖的工作存储器任务,将数学计算与经典的N背部任务相结合。我们研究了低(1背)和高(2背)工作内存负荷和两个亮度水平(灰色和白色)下的滋补瞳孔直径和阶段瞳孔响应。我们发现,工作内存负荷对滋补瞳孔直径的影响被亮度的水平调制,滋补瞳孔直径的增加在较低亮度下的负载较大。相反,在高负荷下发现的较小的阶段瞳孔应答仍然不受亮度的影响。这些结果表明,亮度会影响在持续(分别,瞬态)认知载荷下调节的认知瞳孔反应 - 滋补瞳孔直径(相位瞳孔响应)。这些发现还支持基因座 - Coeruleus系统之间的关系,可能以两个烧制模式 - 补品和阶段 - 以及瞳孔直径在一起。我们建议滋补瞳孔直径追踪轨迹 - 柯勒斯的滋补活性,而相位瞳孔响应反映其相位活性。此外,设计的新型认知范例允许同时操纵认知载荷的持续和瞬态部件,并且可用于解除对滋补瞳孔直径和相位瞳孔反应的影响。 (c)2016年Elsevier B.v.保留所有权利。

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