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Computer-automated silica aerosol generator and animal inhalation exposure system

机译:计算机自动化的二氧化硅气溶胶发生器和动物吸入暴露系统

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摘要

Inhalation exposure systems are necessary tools for determining the dose response relationship of inhaled toxicants under a variety of exposure conditions. The objective of this study was to develop an automated computer controlled system to expose small laboratory animals to precise concentrations of uniformly dispersed airborne silica particles. An acoustical aerosol generator was developed which was capable of re-suspending particles from bulk powder. The aerosolized silica output from the generator was introduced into the throat of a venturi tube. The turbulent high-velocity air stream within the venturi tube increased the dispersion of the re-suspended powder. That aerosol was then used to expose small laboratory animals to constant aerosol concentrations, up to 20mg/m3, for durations lasting up to 8h. Particle distribution and morphology of the silica aerosol delivered to the exposure chamber were characterized to verify that a fully dispersed and respirable aerosol was being produced. The inhalation exposure system utilized a combination of airflow controllers, particle monitors, data acquisition devices and custom software with automatic feedback control to achieve constant and repeatable exposure environments. The automatic control algorithm was capable of maintaining median aerosol concentrations to within ±0.2 mg/m3 of a user selected target concentration during exposures lasting from 2 to 8 h. The system was able to reach 95% of the desired target value in <10min during the beginning phase of an exposure. This exposure system provided a highly automated tool for conducting inhalation toxicology studies involving silica particles.
机译:吸入暴露系统是确定各种暴露条件下吸入有毒物质剂量反应关系的必要工具。这项研究的目的是开发一种自动化的计算机控制系统,以使小型实验动物暴露于精确浓度的均匀分散的机载二氧化硅颗粒。开发了一种声学气溶胶发生器,它能够将散装粉末中的颗粒重新悬浮。从发生器输出的雾化二氧化硅被引入文丘里管的喉部。文丘里管内湍流的高速气流增加了重新悬浮粉末的分散。然后将这种气溶胶用于将小型实验动物暴露于恒定的气溶胶浓度(最高20mg / m 3 ),持续时间长达8小时。对输送到暴露室的二氧化硅气溶胶的颗粒分布和形态进行了表征,以验证是否正在产生完全分散且可吸入的气溶胶。吸入暴露系统结合了气流控制器,颗粒监测器,数据采集设备和具有自动反馈控制功能的定制软件,可实现恒定且可重复的暴露环境。自动控制算法能够在持续2到8小时的暴露期间,将中值气溶胶浓度保持在用户选择的目标浓度的±0.2 mg / m 3 以内。在曝光的开始阶段,系统能够在<10分钟内达到所需目标值的95%。该暴露系统为进行涉及二氧化硅颗粒的吸入毒理学研究提供了高度自动化的工具。

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