Peysakhovich Vsevolod, Causse Mickaël, Scannella Sébastien, Dehais Frédéric
DCAS, ISAE, Université de Toulouse, 10 Avenue E. Belin, 31055 Toulouse Cedex 4, France.
DCAS, ISAE, Université de Toulouse, 10 Avenue E. Belin, 31055 Toulouse Cedex 4, France.
Int J Psychophysiol. 2015 Jul;97(1):30-7. doi: 10.1016/j.ijpsycho.2015.04.019. Epub 2015 May 1.
Pupil diameter is a widely-studied cognitive load measure, which, despite its convenience for non-intrusive operator state monitoring in complex environments, is still not available for in situ measurements because of numerous methodological limitations. The most important of these limitations is the influence of pupillary light reflex. Hence, there is the need of providing a pupil-based cognitive load measure that is independent of light conditions. In this paper, we present a promising technique of pupillary signal analysis resulting in luminance-independent measure of mental effort that could be used in real-time without a priori on luminous conditions. Twenty-two participants performed a short-term memory task under different screen luminance conditions. Our results showed that the amplitude of pupillary dilation due to load on memory was luminance-dependent with higher amplitude corresponding to lower-luminance condition. Furthermore, our experimentation showed that load on memory and luminance factors express themselves differently according to frequency. Therefore, as our statistical analysis revealed, the ratio between low (0-1.6 Hz) and high frequency (1.6-4 Hz) bands (LF/HF ratio) of power spectral densities of pupillary signal is sensitive to the cognitive load but not to luminance. Our results are promising for the measurement of load on memory in ecological settings.
瞳孔直径是一种被广泛研究的认知负荷测量指标,尽管它便于在复杂环境中对操作员状态进行非侵入式监测,但由于存在诸多方法上的局限性,仍无法进行现场测量。其中最重要的局限性是瞳孔光反射的影响。因此,需要提供一种与光照条件无关的基于瞳孔的认知负荷测量方法。在本文中,我们提出了一种有前景的瞳孔信号分析技术,该技术能得出与亮度无关的心理努力测量值,可在无需事先了解光照条件的情况下实时使用。22名参与者在不同屏幕亮度条件下执行了一项短期记忆任务。我们的结果表明,因记忆负荷导致的瞳孔扩张幅度与亮度有关,较高的幅度对应较低的亮度条件。此外,我们的实验表明,记忆负荷和亮度因素在频率方面表现不同。因此,正如我们的统计分析所揭示的,瞳孔信号功率谱密度的低频(0 - 1.6赫兹)和高频(1.6 - 4赫兹)频段之间的比率(低频/高频比率)对认知负荷敏感,但对亮度不敏感。我们的结果对于在自然环境中测量记忆负荷很有前景。