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How to identify water from thickener aqueous solutions by touch

机译:如何通过触摸识别增稠剂水溶液中的水

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摘要

Water detection is one of the most crucial psychological processes for many animals. However, nobody knows the perception mechanism of water through our tactile sense. In the present study, we found that a characteristic frictional stimulus with large acceleration is one of the cues to differentiate water from water contaminated with thickener. When subjects applied small amounts of water to a glass plate, strong stick-slip phenomena with a friction force of 0.46 ± 0.30 N and a vertical force of 0.57 ± 0.36 N were observed at the skin surface, as shown in previous studies. Surprisingly, periodic shears with acceleration seven times greater than gravitational acceleration occurred during the application process. Finite-element analyses predicted that these strong stimuli could activate tactile receptors: Meissner's corpuscle and Pacinians. When such stimuli were applied to the fingertips by an ultrasonic vibrator, a water-like tactile texture was perceived by some subjects, even though no liquid was present between the fingertip and the vibrator surface. These findings could potentially be applied in the following areas: materials science, information technology, medical treatment and entertainment.
机译:水检测是许多动物最重要的心理过程之一。但是,没有人通过触觉了解水的感知机制。在本研究中,我们发现具有较大加速度的特征性摩擦刺激是区分水与增稠剂污染的水的线索之一。如以前的研究所示,当受试者在玻璃板上加少量水时,在皮肤表面观察到强烈的粘滑现象,摩擦力为0.46±0.30 N,垂直力为0.57±0.36N。出人意料的是,在施加过程中发生了周期性剪切,其加速度比重力加速度大七倍。有限元分析预测,这些强烈的刺激可以激活触觉受体:迈斯纳氏小体和Pacinians。当通过超声波振动器将这种刺激施加到指尖上时,即使在指尖和振动器表面之间不存在液体,一些对象也感觉到水状的触感。这些发现可能会应用于以下领域:材料科学,信息技术,医疗和娱乐。

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