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Detecting stink bugs/damage in cotton utilizing a portable electronic nose

机译:利用便携式电子鼻检测棉花中的臭虫/损坏

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摘要

Current scouting techniques for stink bugs are variable, time-consuming, and costly. The overarching goal of this research was to develop effective and affordable tools for detecting stink bugs and damage induced by stink bugs in cotton. A commercially available electronic nose (Cyranose 320) comprising an array of 32 carbon-black composite sensors was used for this purpose and its performance was evaluated under laboratory and field conditions. Volatile compounds emitted by stink bugs were confirmed to be trans-2-decenal and trans-2-octenal. Four of 32 sensors responded to volatile chemicals produced by bugs and showed responses (smell-prints) to pure trans-2-decenal that were identical to those obtained from stink bugs. Under laboratory conditions, internal boll injury (interior walls of bolls and locks with raised callus growths or obvious damage to lint and seed) was predicted 95% of the time and the presence of stink bugs 100% of the time. There was a strong correlation (R-2 = 0.95) between the number of stink bugs in a sample and the response of Cyranose sensors.
机译:当前针对臭虫的侦查技术是可变的,费时的且昂贵的。这项研究的总体目标是开发有效且价格合理的工具来检测棉花中的臭虫和臭虫引起的损害。为此,使用了包含32个炭黑复合传感器阵列的可商购电子鼻(Cyranose 320),并在实验室和野外条件下对其性能进行了评估。臭虫散发的挥发性化合物被确认为反-2-癸烯和反-2-辛烯。 32个传感器中有4个对虫子产生的挥发性化学物质做出了响应,并显示出对纯trans-2-decenal的响应(气味印刷),与从臭虫获得的响应相同。在实验室条件下,预计内部棉铃伤害(棉铃和lock的内壁具有愈伤组织的生长或对皮棉和种子的明显破坏)的发生时间为95%,有臭虫的发生率为100%。样品中臭虫的数量与Cyranose传感器的响应之间存在很强的相关性(R-2 = 0.95)。

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