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Artificial noses.

机译:人工鼻子。

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摘要

The mammalian olfactory system is able to detect many more odorants than the number of receptors it has by utilizing cross-reactive odorant receptors that generate unique response patterns for each odorant. Mimicking the mammalian system, artificial noses combine cross-reactive sensor arrays with pattern recognition algorithms to create robust odor-discrimination systems. The first artificial nose reported in 1982 utilized a tin-oxide sensor array. Since then, however, a wide range of sensor technologies have been developed and commercialized. This review highlights the most commonly employed sensor types in artificial noses: electrical, gravimetric, and optical sensors. The applications of nose systems are also reviewed, covering areas such as food and beverage quality control, chemical warfare agent detection, and medical diagnostics. A brief discussion of future trends for the technology is also provided.
机译:哺乳动物的嗅觉系统能够利用交叉反应性气味受体来检测每种气味的独特反应模式,从而能够检测出比其受体数量更多的气味。模仿哺乳动物系统,人造鼻子将交叉反应传感器阵列与模式识别算法结合在一起,从而创建了强大的气味识别系统。 1982年报道的第一个人造鼻子使用了氧化锡传感器阵列。但是,从那时起,已经开发了多种传感器技术并将其商业化。这篇评论重点介绍了人造鼻子中最常用的传感器类型:电传感器,重量传感器和光学传感器。还对鼻系统的应用进行了回顾,涵盖了诸如食品和饮料质量控制,化学战剂检测和医疗诊断等领域。还简要介绍了该技术的未来趋势。

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