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A Stimulus-Response Processing Framework for Pupil Dynamics Assessment during Iso-Luminant Stimuli

机译:ISO荧光刺激期间瞳孔动力学评估的刺激响应处理框架

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Pupil size is governed by the synergic action of the Autonomic Nervous System. Pupil Diameter (PD) is primarily influenced by the light level and it is responsive to variations of global luminance level. However, recent studies have shown that there is also a high-level interpretation which could modulate this physiological response. In this paper, we develop an ad-hoc protocol based on iso-luminant stimuli and validate its effectiveness for the analysis of high-level modulation of pupil response. A visual illusion was reproduced from literature and adapted in two different colors. Prior to the response analysis, a reconstruction of the missing data due to blinks and other artifacts were reconstructed by using a recently developed signal reconstruction algorithm (Iterative - Single Spectrum Analysis: I-SSA); then both time and frequency domain parameters were extracted from the PD signal. Results indicate that there are peculiarly different responses to iso-luminant stimuli with different image structures and dominating colors, thus indicating a possible high-level processing mechanism. Our results pave the way for future evaluation of comatose or generic unconscious state based on non-contact pupil dynamics assessment.
机译:瞳孔大小受自主神经系统的协同作用。瞳孔直径(PD)主要受光线水平的影响,并且响应于全球亮度水平的变化。然而,最近的研究表明还有一种高级别的解释,可以调节这种生理反应。在本文中,我们基于ISO-发光刺激的临时协议,并验证了瞳孔响应高级别调制分析的有效性。从文献中再现视觉幻觉并以两种不同的颜色调整。在响应分析之前,通过使用最近开发的信号重建算法重建了由于闪烁和其他伪像而导致的缺失数据的重建(迭代 - 单频谱分析:I-SSA);然后从PD信号中提取两个时间和频域参数。结果表明,对不同图像结构和主导颜色的异亮刺激存在特殊的不同响应,从而指示可能的高级处理机制。我们的结果为未来评估了基于非接触式瞳孔动力学评估的昏迷或通用无意识状态的评估方法。

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