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Study and development of an 'electronic nose' and comparison with mammalian olfaction.

机译:研究和开发“电子鼻”并与哺乳动物嗅觉进行比较。

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Arrays of broadly responsive vapor detectors (i.e., electronic noses) am receiving an increasing amount of scientific attention for their potential as analytical devices, as models for studying mammalian olfaction, and perhaps for someday ultimately duplicating or surpassing the mammalian olfactory sense. Herein, research was primarily focused on an electronic nose composed of an array of carbon black-polymer composite detectors while arrays of tin oxide detectors and organic conducting polymer detectors were used only in a comparison study. The research determined the odorant resolving power of electronic nose sensor arrays, explored the dependence of the electronic nose array response intensity on odorant vapor pressure, and compared quantitatively measurable phenomena between the electronic nose and the mammalian olfactory sense.; The Fisher linear discriminant statistical metric was utilized to quantify the performance of arrays composed of carbon black-insulating polymer composite detectors, tin oxide detectors and bulk conducting organic polymer detectors in resolving nineteen odorant vapors. The odorant resolving power of the sensor arrays as a function of the chemical composition of the detectors and the number of detectors they contained was studied. The results provided insights into optimizing the chemical diversity and size of a chemical vapor sensor array for various tasks.; Response data were collected for a carbon black-polymer composite electronic nose array during exposure to homologous series of 1-alcohol and n-alkane odorants. The mean response intensity of the electronic nose detectors, and the response intensity of the most strongly-driven set of electronic nose detectors, was essentially constant for members of a chemically homologous odorant series when the concentration of each odorant in the gas phase was maintained at a constant fraction of the odorant's vapor pressure. A similar trend is observed in human odor detection threshold values for these same odorants. The trends were interpreted based on thermodynamic odorant properties.; Experiments were performed to compare the detection thresholds and trends in discrimination abilities of the electronic nose to those of the mammalian olfactory sense, and to develop models predicting human odor quality judgements from electronic nose detector responses.
机译:广泛响应的蒸气检测器(即电子鼻)阵列由于其作为分析装置的潜力,作为研究哺乳动物嗅觉的模型而受到越来越多的科学关注,并且也许有朝一日最终可以复制或超越哺乳动物的嗅觉。在此,研究主要集中在由炭黑-聚合物复合探测器阵列组成的电子鼻,而氧化锡探测器和有机导电聚合物探测器阵列仅用于比较研究。该研究确定了电子鼻传感器阵列的除味能力,探索了电子鼻阵列响应强度对气味蒸汽压的依赖性,并比较了电子鼻和哺乳动物嗅觉之间可定量测量的现象。利用Fisher线性判别统计量度来量化由碳黑绝缘聚合物复合检测器,氧化锡检测器和本体导电有机聚合物检测器组成的阵列在解决19种气味蒸汽方面的性能。研究了传感器阵列的气味消除能力与检测器化学成分及其所含检测器数量的关系。结果为优化用于各种任务的化学蒸气传感器阵列的化学多样性和尺寸提供了见识。暴露于同源系列的1-醇和正构烷烃加味剂期间,收集了炭黑-聚合物复合电子鼻阵列的响应数据。当气相中每种气味剂的浓度保持在120℃时,化学同源气味剂系列的成员的电子鼻子检测器的平均响应强度以及驱动最强的一组电子鼻子检测器的响应强度基本上是恒定的。气味蒸气压的恒定分数。对于这些相同的气味剂,在人类气味检测阈值中观察到了类似的趋势。根据热力学气味特性解释了趋势。进行了实验,以比较电子鼻与哺乳动物嗅觉的检测阈值和辨别能力趋势,并开发根据电子鼻检测器响应预测人的气味质量判断的模型。

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