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Perceived Cooling Using Asymmetrically-Applied Hot and Cold Stimuli

机译:使用非对称施加的冷热刺激感知冷却

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摘要

Temperature perception is a highly nonlinear phenomenon with faster rates of change being perceived at much lower thresholds than slower rates. This paper presents a method that takes advantage of this nonlinear characteristic to generate a perception of continuous cooling even though the average temperature is not changing. The method uses multiple thermal actuators so that a few are cooling quickly while the rest of the actuators are heating slowly. The slowly-heating actuators are below the perceptual threshold temperature change and hence are not perceived, while the quickly-cooling actuators are above the perceptual temperature change, hence are perceived. As a result, a feeling of decreasing temperature was elicited, when in fact, there was no net change in the temperature of the skin. Three sets of judiciously designed experiments were conducted in this study, investigating the effects of actuator sizes, forearm measurement locations, patterns of actuator layout, and various heating/cooling time cycles. Our results showed that 19 out 21 participants perceived the continuous cooling effect as hypothesized. Our research indicates that the measurement location, heating/cooling cycle times, and arrangement of the actuators affect the perception of continuous cooling.
机译:温度感知是一种高度非线性的现象,与较低的速率相比,在较低的阈值下可以感知较快的变化速率。本文提出了一种利用这种非线性特性来产生连续冷却感知的方法,即使平均温度没有变化。该方法使用多个热执行器,以使其中几个快速冷却,而其余执行器缓慢加热。缓慢加热的执行器低于感知阈值温度变化,因此无法感知,而快速冷却的执行器高于感知温度变化,因此感知。结果,引起了温度降低的感觉,而实际上皮肤的温度没有净变化。在这项研究中进行了三组经过精心设计的实验,调查了执行器尺寸,前臂测量位置,执行器布局的模式以及各种加热/冷却时间周期的影响。我们的结果表明,在21位参与者中,有19位认为持续冷却效果是假设的。我们的研究表明,测量位置,加热/冷却循环时间以及执行器的布置会影响持续冷却的感觉。

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