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A self-powered brain-linked biosensing electronic-skin for actively tasting beverage and its potential application in artificial gustation

机译:一个自供电的大脑若为积极品尝饮料和电子皮肤其潜在的应用在人工味觉

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摘要

A new self-powered brain-linked biosensing electronic-skin (e-skin) for detecting pH value and alcoholicity of beverages has been realized based on polydimethysiloxane/polypyrrole (PDMS/Ppy) nanostructures. This e-skin (linking brain and transmitting signal to the specific encephalic region) can work as an artificial gustation system for gustatory perception substitution without an external electricity source. The sensing units on the e-skin can efficiently convert mechanical energy (human motion) into triboelectric impulse. The triboelectric output can be influenced by pH value and alcohol concentration in common beverages (acidic, alkaline or alcoholic drinks), which can be treated as the bio-chemical sensing signal. The bio-chemical sensing behavior arises from the triboelectrification/bio-chemical-sensing coupling effect. The biosensing e-skin is simply linked to the brain of a mouse at the primary motor cortex area, and the inputting signal can take part in the mouse perception, thus realizing behavior interventions, e.g., shaking of legs. This study provides a novel approach for developing artificial gustation e-skin and self-powered brain-machine interaction system with low cost.
机译:一个新的自动推进的大脑若电子皮肤(电子皮肤)检测pH值和酒精含量的饮料已经实现根据polydimethysiloxane / polypyrrole(PDMS / Ppy)纳米结构。大脑和特定的传输信号脑的地区)可以作为一个人工工作味觉系统味觉感知没有外部电力替代源。有效地转换为机械能(人类运动)摩擦电冲动。摩擦电输出可以受pH值的影响价值和共同的酒精浓度饮料(酸性、碱性或酒精饮料),可作为生化传感吗信号。从triboelectrification / bio-chemical-sensing耦合效应。与一只老鼠的大脑初级运动皮质区,输入信号参加老鼠感知,从而实现行为干预措施,例如,颤抖的腿。这项研究提供了一种新方法发展人工味觉电子皮肤自供电的脑机交互系统较低的成本。

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