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Towards Voluntary Pupil Control Training Affective Strategies?

机译:走向自愿瞳孔控制培训情感策略?

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During the past years, increasing attention is being paid to operationalize pupil dynamics for affective classification (Jacobs, 1996). Thereby it is generally assumed that pupil size displays a genuine impression of user's cognitive state but defies any voluntary control (Loewenfeld, 1993). Based on Ekman (2008) we applied graphical feedback on pupil diameter changes to utilize mechanisms of operant conditioning to gradually enable voluntary control over pupil size. Participants underwent a training program to exert control by utilizing affective associations to expand pupil size and relaxation strategies to reduce it. As a result, more than half of the participants demonstrated to be able to increase pupil sizes relative to baseline recordings. Training effects did not show up. Furthermore, controlling influence diminishes after about ten seconds. Intentional increase of sympathetic activity seems to be subject to habituation processes that allow central inhibition of parasympathetic pathways only over a short period. Beside strategy-based factors, physiological mechanisms like baseline pupil activity may determine inter-individual differences in exerting voluntary control. In summary it can be noted that pupil-based communication in HCI extends affective monitoring and may constitute an active input channel to reliably interfere by means of simple cognitive strategies.
机译:在过去几年中,正在支付越来越关注的关注,以运营情感分类的瞳孔动力学(Jacobs,1996)。因此,通常假设瞳孔尺寸显示出用户的认知状态的真正印象,而是违反任何自愿控制(Loewenfeld,1993)。基于EKMAN(2008),我们应用了对瞳孔直径变化的图形反馈,以利用操作性调节机制逐步实现对瞳孔尺寸的自愿控制。参与者通过利用情感协会扩大瞳孔大小和放松策略来减少培训计划来施加控制,以减少瞳孔大小和放松策略。结果,超过一半的参与者证明能够增加相对于基线记录的瞳孔大小。培训效果没有出现。此外,在大约十秒钟后控制影响减少。有意增加交感神经活动似乎受习惯过程,允许只在短时间内抑制副交感神经途径。除了基于战略的因素外,基线瞳孔活动等生理机制可以确定施加自愿控制的间间差异。总之,可以注意到,HCI中基于瞳孔的通信扩展了情感监测,并且可以构成有源输入通道,以通过简单的认知策略可靠地干扰。

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