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Determinants for Nasal Trigeminal Detection of Volatile Organic Compounds

机译:鼻三叉检测中挥发性有机化合物的决定因素

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We explored the influence of methodological and chemical parameters on the detection of nasal chemesthesis (i.e.,trigeminal stimulation) evoked by volatile organic compounds (VOCs).To avoid odor biases,chemesthesis was probed via nasal pungency detection in anosmics and via nasal localization (i.e.,lateralization) in normosmics,in both cases using forced-choice procedures.In the experiments with anosmics,12 neat VOCs were selected based on previous reports of lack of chemesthetic response.Although none of the VOCs reached 100% detection,detectability and confidence of detection were higher when using a glass vessel system adapted with nosepieces to fit the nostrils tightly than when using wide-mouth glass jars.Half the stimuli were detected well above chance and half were not.When the latter were tested again after being heated to 37deg C,that is,body temperature (from room temperature,23deg C),to increase their vapor concentration,only one,octane,significantly increased its detectability.Chemesthesis gauged with normosmics mirrored that with anosmics.Gas chromatography measurements showed that,even at 23deg C,the saturated vapor concentrations of the undetected stimuli,except vanillin,were well above the respective calculated nasal pungency threshold (NPT) from an equation that,in the past,had accurately described and predicted NPTs.We conclude that,except for octane and perhaps vanillin,the failure of the other four VOCs to precipitate nasal chemesthesis rests on a chemical-structural limitation,for example,the molecules lack a key property to fit a receptor pocket,rather than on a concentration limitation,for example,the vapor concentration is too low to reach a threshold value.
机译:我们探索了方法和化学参数对挥发性有机化合物(VOCs)引起的鼻化学觉(即三叉神经刺激)的检测的影响。为避免气味偏差,通过在厌氧菌中通过鼻刺激性检测和通过鼻局部定位(即在这两种情况下,都使用强制选择程序。在使用厌氧剂的实验中,根据先前对化学反应缺乏的报道,选择了12种纯净的VOC。使用装有鼻孔的玻璃器皿系统紧贴鼻孔的检测率要比使用宽口玻璃罐子的检测率高。一半的刺激被发现高于机会,一半没有被发现;后者在加热到37度后再次进行测试C,即体温(从室温开始,为23摄氏度),以增加其蒸气浓度,只有一个辛烷值显着提高了其可检测性性质,化学计量学与化学计量学相符,而与厌氧菌谱学相仿。我们得出的结论是,除辛烷和香兰素外,其他四种VOCs未能促使鼻部化学物质的沉积取决于化学结构的限制,例如,分子缺乏关键具有适合接收器口袋的特性,而不是受浓度限制,例如,蒸气浓度太低而无法达到阈值。

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