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Development of a Portable Electronic Nose for Detection of Cotton Damaged byNezara viridula(Hemiptera: Pentatomidae)

机译:便携式电子鼻的开发,用于检测受内扎病毒(Nezara viridula)伤害的棉花(半翅目:昆虫科)

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Stink bugs are significant pests of cotton in the southeastern USA, causing millions of dollars in control costs and crop losses each year. New methods to detect stink bug damage must be investigated in order to reduce these costs and optimize pesticide applications. One such method would be to detect the volatile organic compounds (VOCs) emitted from cotton plants damaged by stink bugs. A portable device was developed to draw VOCs from the head space of a cotton boll over carbon black-polymer composite sensors. From the response of these sensors, this device would indicate if the boll was fed upon by a stink bug or not. The device was 100% accurate in distinguishing bolls damaged by stink bugs from undamaged controls when tested under training conditions. However, the device was only 57.1% accurate in distinguishing damaged from undamaged bolls when tested 24 h after it was trained. These results indicated that this device was capable of classifying cotton as damaged or undamaged by differentiating VOCs released from undamaged or damaged bolls, but improvements in design are required to address sensitivity to fluctuations in environmental conditions.
机译:臭虫是美国东南部棉花的重要害虫,每年造成数百万美元的控制成本和农作物损失。必须研究检测臭虫危害的新方法,以减少这些成本并优化农药的使用。一种这样的方法将是检测从臭虫损坏的棉花植物中释放的挥发性有机化合物(VOC)。开发了一种便携式设备,用于从棉铃的顶部空间吸取碳黑聚合物复合传感器上的VOC。根据这些传感器的响应,该设备将指示是否有臭虫给棉铃喂食。在训练条件下进行测试时,该设备可以100%准确地分辨出由臭虫损坏的棉铃和未损坏的控件。但是,在训练24小时后,该设备在区分损坏的棉铃和未损坏的棉铃方面的准确度仅为57.1%。这些结果表明,该设备能够通过区分未损坏或损坏的棉铃释放的VOC来将棉花分类为损坏或未损坏的棉花,但是需要对设计进行改进以解决对环境条件波动的敏感性。

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