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Human Odor Detectability:New Methodology Used to Determine Threshold and Variation

机译:人的气味检测能力:用于确定阈值和变异的新方法

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Current ambiguity concerning the related issues of optimal means for measurement of odor sensitivity and the functional properties of the olfactory system hinders progress in basic and applied research on the human sense of smell.To address these needs,we selected n-amyl acetate (nAA) as a test odorant and developed a methodology in which participants (Ps) receive multiple presentations each session of several concentrations.Yes-no resposnes as to whether odor was detected are analyzed using binomial statistics,with the probability that a given proportion of yes responses (or greater) would occur by change alone being treated as the inverse of detectability.Over the course of multiple sessions,this information is also used to maximize the collection of data in the peri-threshold region.Surprisingly,data collected over as many as 14 sessions were fit well by a single logistic regression model relating probability and concentration.Threshold concentrations,defined as those corresponding to a probability of 0.05,varied from 7.11 to 167.53 p.p.b.(v/v) for 11 Ps.Our appraoch and findings,if shown to be representative of other combinations of Ps and odorants,could accelerate the pace of research in human olfaction by providing a comprehensive operational definition of the limit of the olfactory system to detect odorant molecules.
机译:当前关于气味敏感度最佳测量方法和嗅觉系统功能特性相关问题的模棱两可,阻碍了人类嗅觉基础研究和应用研究的进展。为满足这些需求,我们选择了乙酸正戊酯(nAA)作为一种测试气味剂,并开发了一种方法,参与者(Ps)每次都接受几种浓度的浓度的报告。使用二项式统计量分析是否检测到气味是否是对策,并以给定比例的是(或更大的变化)将被视为可检测性的逆向。在多个会话过程中,此信息还用于最大化阈值附近区域的数据收集。令人惊讶的是,收集到的数据多达14个会话通过概率和集中度的单个逻辑回归模型拟合得很好。阈值集中度定义为对应的11 Ps的概率为0.05,从7.11到167.53 ppb(v / v)不等。我们的研究和发现,如果能代表Ps和增香剂的其他组合的代表,可以通过提供以下方法来加快人类嗅觉研究的步伐嗅觉系统极限的全面操作定义,用于检测气味分子。

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