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Setting occupational exposure limits in humans: contributions from the field of experimental psychology.

机译:设定人类的职业接触限值:实验心理学领域的贡献。

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摘要

Psychophysical methods from the field of experimental psychology are evaluated for their utility in the derivation of occupational exposure limits (OELs) for volatile chemicals based on acute sensory irritation in humans. The lateralization threshold method, which involves the localization of trigeminal vapor to the stimulated nostril, is evaluated for its underlying assumptions, reliability and validity. Whole body exposures, on the other hand, which involve the controlled, ambient exposure of human subjects to the irritant at one or a series of concentrations for an extended period are also discussed. It is concluded that the single-organ psychophysical method is largely resistant to response bias is practical and economical. However, its reliability and validity need further assessment. Whole body exposures, while having enhanced ecological validity, are more prone to demand characteristics, response bias, and subject beliefs than the traditional psychophysical procedures. An approach that involves the exposure of only the most sensitive organs such as the eyes and nose, via a mask or facebox, could facilitate the administration and alternation of odorant/irritant stimuli over a wide range of concentrations while enhancing ecological validity.
机译:对来自实验心理学领域的心理物理方法的实用性进行了评估,这些方法可基于对人体的急性感觉刺激来推导挥发性化学物质的职业接触限值(OEL)。对涉及三叉神经蒸气定位于受刺激的鼻孔的偏侧化阈值方法进行了评估,并对其潜在假设,可靠性和有效性进行了评估。另一方面,还讨论了整个人体暴露,其中涉及在较长时期内以一种或一系列浓度对人类对象进行受控的环境暴露于刺激物。结论是,单器官心理物理学方法在很大程度上抵抗反应偏差是实用且经济的。但是,其可靠性和有效性还需要进一步评估。与传统的心理物理程序相比,尽管全身暴露具有更高的生态有效性,但更容易产生需求特征,反应偏见和主题信念。仅涉及通过面罩或面罩暴露最敏感的器官(例如眼和鼻子)的方法,可以在很宽的浓度范围内促进施用和改变气味/刺激性刺激,同时提高生态有效性。

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