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同源醇类鼻腔侧化中的时间整合

Temporal integration in nasal lateralization of homologous alcohols.

作者信息

Wise Paul M, Toczydlowski Sean E, Wysocki Charles J

机构信息

Monell Chemical Senses Center, 3500 Market Street, Philadelphia, Pennsylvania 19104-3308, USA.

出版信息

Toxicol Sci. 2007 Sep;99(1):254-9. doi: 10.1093/toxsci/kfm144. Epub 2007 Jun 4.

Abstract

Through temporal integration, sensory systems accumulate stimulus energy, e.g., photons, acoustic energy, or molecules, over time to detect weaker signals than they otherwise could. Past studies found imperfect temporal integration in detection of nasal irritation: To maintain a fixed level of detection, one must increase stimulus duration by more than twofold to compensate for cutting concentration in half. Despite this generality, integration varied widely among compounds, from nearly perfect, i.e., an increase in duration of slightly more than twofold could compensate for cutting concentration in half, to highly imperfect. How do such differences relate to molecular parameters? Perhaps molecules that more readily dissolve into the lipid-rich perireceptor environment will accumulate, and therefore integrate, better over time. To test this hypothesis, studies compared temporal integration for three compounds that differ systematically in lipid solubility: n-ethanol, n-butanol, and n-hexanol. Subjects were healthy, adult humans. Nasal lateralization was used to measure irritation threshold. Subjects received a fixed concentration of a single compound within each experimental session, and stimulus duration was varied to find the briefest stimulus subjects could reliably lateralize. Concentration and compound varied across sessions. Consistent with the hypothesis, integration did become closer to perfect as lipid solubility increased. That just one molecular parameter can help predict degree of integration suggests that a structure-activity approach to understanding temporal integration shows promise.

摘要

通过时间整合,感觉系统会随着时间积累刺激能量,例如光子、声能或分子,以检测比其他方式所能检测到的更微弱的信号。过去的研究发现在检测鼻腔刺激时存在不完美的时间整合:为了维持固定的检测水平,必须将刺激持续时间增加两倍以上,以补偿浓度减半的影响。尽管存在这种普遍性,但不同化合物之间的整合差异很大,从几乎完美(即持续时间增加略超过两倍就可以补偿浓度减半)到非常不完美。这些差异与分子参数有何关系?也许更容易溶解到富含脂质的感受器周围环境中的分子会随着时间的推移更好地积累并因此更好地整合。为了验证这一假设,研究比较了三种在脂溶性上有系统差异的化合物的时间整合:正乙醇、正丁醇和正己醇。受试者为健康的成年人。使用鼻侧化来测量刺激阈值。在每个实验环节中,受试者接受单一化合物的固定浓度,刺激持续时间会变化,以找到受试者能够可靠地辨别侧化的最短刺激。浓度和化合物在不同环节中有所变化。与假设一致,随着脂溶性增加,整合确实变得更接近完美。仅一个分子参数就能帮助预测整合程度,这表明采用结构 - 活性方法来理解时间整合具有前景。

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Temporal integration in nasal lateralization of homologous alcohols.同源醇类鼻腔侧化中的时间整合
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