Approach to setting occupational exposure limits for sensory irritants in The Netherlands.

V. Feron, J. Art, J. Mojet
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引用次数: 11

Abstract

This article describes how scientists in the Netherlands set occupational exposure limits (OELs) for sensory irritants. When they tackle this issue, a number of key questions need to be answered. For example, did the studies indeed measure sensory irritation and not cytotoxicity? When the irritant is an odorant, can interference of olfactory stimulation be excluded? In the case of subjective measurements, can psychological irritation be excluded? When adaptation is an issue, did the studies indeed measure adaptation and not habituation? When OELs are established in the Netherlands, each of these issues is carefully addressed before a value is suggested. When setting an OEL in the Netherlands, human data carry more weight than animal data of comparable quality. As in the United States, documentation for the recommended OEL is written and a discussion of all available relevant and reliable data culminating in the selection of the key study for deriving the health-based recommended occupational exposure limit is provided. Special effort is dedicated to reconciling differences between the animal and human data. If the toxicological database is considered to be inadequate, the committee acknowledges this limitation and will not recommend a limit value due to insufficient data.
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设定荷兰感官刺激物职业暴露限值的方法。
这篇文章描述了荷兰的科学家如何为感官刺激物设定职业暴露限值(OELs)。当他们处理这个问题时,需要回答一些关键问题。例如,这些研究是否确实测量了感官刺激而不是细胞毒性?当刺激物是气味时,是否可以排除嗅觉刺激的干扰?在主观测量的情况下,是否可以排除心理刺激?当适应成为一个问题时,这些研究确实衡量了适应而不是习惯化吗?当在荷兰建立oel时,在建议值之前会仔细解决这些问题。在荷兰设置OEL时,人类数据比同等质量的动物数据更重要。与美国一样,为建议的职业接触限值编写了文件,并讨论了所有现有的相关和可靠数据,最后选择了得出基于健康的建议职业接触限值的关键研究。特别努力致力于调和动物和人类数据之间的差异。如果毒理学数据库被认为是不充分的,委员会承认这一局限性,并且不会因为数据不足而推荐一个极限值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Approaches and considerations for setting occupational exposure limits for sensory irritants: report of recent symposia. Approach to setting occupational exposure limits for sensory irritants in The Netherlands. The origin of a nicotine detection method. Telephone communications with several commercial respirators. Replotting data for chronic beryllium disease.
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