Measuring users' responses to humans, robots, and human-like robots with functional near infrared spectroscopy

M. Strait, Matthias Scheutz
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引用次数: 13

Abstract

The Uncanny Valley Hypothesis (UVH) describes the sudden change in a person's affect from affinity to aversion that is evoked by robots that border a human-like appearance. The portion of the human-likeness spectrum in which such aversion is posited to occur is referred to as the “uncanny valley”. However, evidence in support of the UVH is primarily based on subjectively assessed evaluations. Thus it remains an open question as to whether there are behavioral or neurophysiological manifestations of uncanny valley effects. To address this gap in literature, we investigated the activation of the anterior prefrontal cortex (PFC) - a region of the brain associated with emotion regulation - in response to a series of robots with varying human-likeness. We hypothesized that highly human-like robots - which have been found to receive negative subjective attributions - will also elicit increased activity in the PFC versus humans or robots with lesser degrees of human-likeness in accordance with the UVH. Our results show a “valley” in brain activity in the PFC corresponding to the valley observed via subjective measures alone, thus suggesting one neural manifestation (the PFC) of uncanny valley effects and further supporting the affective response (aversion) posited to occur by the UVH. However, the results also reveal a second “uncanny valley” in prefrontal hemodynamics, which suggests that the effects (and the contributing factors) are more complex than previously understood.
用功能性近红外光谱测量用户对人类、机器人和类人机器人的反应
恐怖谷假说(UVH)描述了一个人的情感从亲和到厌恶的突然变化,这种变化是由接近人类外表的机器人引起的。人类相似谱中出现这种厌恶情绪的部分被称为“恐怖谷”。然而,支持UVH的证据主要基于主观评估。因此,恐怖谷效应是否存在行为或神经生理表现仍然是一个悬而未决的问题。为了解决这一文献空白,我们研究了前额叶前部皮层(PFC)的激活——大脑中与情绪调节相关的区域——对一系列具有不同人形的机器人的反应。我们假设,与人类或与人类相似程度较低的机器人相比,高度类似人类的机器人——已经发现它们会接受负面的主观归因——也会引起PFC的活动增加。我们的研究结果显示,PFC的大脑活动有一个“谷”,对应于单独通过主观测量观察到的谷,从而表明恐怖谷效应的一种神经表现(PFC),并进一步支持由UVH产生的情感反应(厌恶)。然而,研究结果也揭示了前额叶血流动力学中的第二个“恐怖谷”,这表明其影响(和促成因素)比以前所理解的要复杂得多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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