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评估挥发性化学物质对人体上呼吸道和眼部的刺激作用。

Assessment of upper respiratory tract and ocular irritative effects of volatile chemicals in humans.

作者信息

Doty Richard L, Cometto-Muñiz J Enrique, Jalowayski Alfredo A, Dalton Pamela, Kendal-Reed Martin, Hodgson Michael

机构信息

Smell & Taste Center, University of Pennsylvania, Medical Center, Philadelphia, PA 19104, USA.

出版信息

Crit Rev Toxicol. 2004 Mar-Apr;34(2):85-142. doi: 10.1080/10408440490269586.

Abstract

Accurate assessment of upper respiratory tract and ocular irritation is critical for identifying and remedying problems related to overexposure to volatile chemicals, as well as for establishing parameters of irritation useful for regulatory purposes. This article (a) describes the basic anatomy and physiology of the human upper respiratory tract and ocular mucosae, (b) discusses how airborne chemicals induce irritative sensations, and (c) reviews practical means employed for assessing such phenomena, including psychophysical (e.g., threshold and suprathreshold perceptual measures), physiological (e.g., cardiovascular responses), electrophysiological (e.g., event-related potentials), and imaging (e.g., magnetic resonance imaging) techniques. Although traditionally animal models have been used as the first step in assessing such irritation, they are not addressed here since (a) there are numerous reviews available on this topic and (b) many rodents and rabbits are obligate nose breathers whose nasal passages differ considerably from those of humans, potentially limiting generalization of animal-based data to humans. A major goal of this compendium is to inform the reader of procedures for assessing irritation in humans and to provide information of value in the continued interpretation and development of empirical databases upon which future reasoned regulatory health decisions can be made.

摘要

准确评估上呼吸道和眼部刺激对于识别和纠正与过度接触挥发性化学物质相关的问题,以及建立用于监管目的的刺激参数至关重要。本文(a)描述了人类上呼吸道和眼部黏膜的基本解剖学和生理学,(b)讨论了空气中的化学物质如何引发刺激感,以及(c)回顾了用于评估此类现象的实用方法,包括心理物理学方法(如阈值和阈上感知测量)、生理学方法(如心血管反应)、电生理学方法(如事件相关电位)和成像方法(如磁共振成像)。尽管传统上动物模型一直被用作评估此类刺激的第一步,但本文不涉及,原因如下:(a)关于该主题已有大量综述,(b)许多啮齿动物和兔子是专性鼻呼吸者,其鼻腔通道与人类有很大差异,这可能会限制基于动物的数据对人类的普遍适用性。本综述的一个主要目标是告知读者评估人类刺激的程序,并提供有价值的信息,以便在持续解释和开发经验数据库时参考,从而为未来合理的监管健康决策提供依据。

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