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在通过具有不同呼吸阻力的呼吸器进行呼吸时,艰苦工作期间的吸气流量。

Inspiratory flow rates during hard work when breathing through different respirator inhalation and exhalation resistances.

作者信息

Coyne Karen, Caretti David, Scott William, Johnson Arthur, Koh Frank

机构信息

US Army-Edgewood CB Center, Aberdeen Proving Ground, MD 21010, USA.

出版信息

J Occup Environ Hyg. 2006 Sep;3(9):490-500. doi: 10.1080/15459620600867807.

Abstract

There has been a long-standing debate regarding the adequacy of airflow rates used in respirator certification testing and whether these test flow rates underestimate actual values. This study investigated breath by breath inspiratory peak flow rate, minute ventilation, and instantaneous flow rates of eight young, healthy volunteers walking on a treadmill at 80-85% of maximal aerobic capacity until exhaustion while wearing an air-purifying respirator with one of eight combinations of inhalation and exhalation resistance. An analysis of variance was performed to identify differences among the eight conditions. Scheffe's post hoc analysis indicated which means differed. The group of conditions with the highest average value for each parameter was identified and considered to represent a worst-case scenario. Data was reported for these conditions. A Gaussian distribution was fit to the data and the 99.9% probability levels determined. The 99.9% probability level for the peak and instantaneous flow rates were 374 L/min and 336 L/min, respectively. The minute ventilation distribution was not Gaussian. Less than 1% of the recorded minute ventilations exceeded 135 L/min. Instantaneous flow rates exceeded the National Institute for Occupational Safety and Health's respirator test standards of 64, 85, and 100 L/min constant flow 91%, 87%, and 82% of the time, respectively. The recorded minute ventilations exceeded the 40 L/min minute ventilation test standard (for tests with a sinusoidal flow pattern) 100% of the time. This study showed that young, healthy respirator wearers generated peak flow rates, minute ventilations, and instantaneous flow rates that consistently exceeded current test standards. Their flow rates should be higher than those of a respirator wearer performing occupational work and could be considered upper limits. Testing respirators and respirator cartridges using a sinusoidal breathing pattern with a minute ventilation of 135 L/min (peak flow rate approximately 424 L/min) would encompass 99% of the recorded minute ventilations and 99.9% of the predicted peak and instantaneous flow rates from this study and would more accurately reflect human respiration during strenuous exercise.

摘要

关于呼吸器认证测试中使用的气流速率是否足够以及这些测试流速是否低估实际值,一直存在长期争论。本研究调查了八名年轻健康志愿者在跑步机上以最大有氧能力的80 - 85%行走直至筋疲力尽时,佩戴具有八种吸入和呼气阻力组合之一的空气净化呼吸器时的逐次吸气峰值流速、分钟通气量和瞬时流速。进行方差分析以确定八种条件之间的差异。谢费事后分析表明哪些均值存在差异。确定了每个参数平均值最高的条件组,并认为其代表最坏情况。报告了这些条件下的数据。对数据拟合高斯分布并确定99.9%概率水平。峰值和瞬时流速的99.9%概率水平分别为374升/分钟和336升/分钟。分钟通气量分布不是高斯分布。记录的分钟通气量中不到1%超过135升/分钟。瞬时流速分别有91%、87%和82%的时间超过美国国家职业安全与健康研究所呼吸器测试标准的64、85和100升/分钟恒定流速。记录的分钟通气量100%的时间超过40升/分钟的分钟通气测试标准(用于正弦流模式测试)。本研究表明,年轻健康的呼吸器佩戴者产生的峰值流速、分钟通气量和瞬时流速持续超过当前测试标准。他们的流速应高于从事职业工作的呼吸器佩戴者的流速,可被视为上限。使用分钟通气量为135升/分钟(峰值流速约为424升/分钟)的正弦呼吸模式测试呼吸器和呼吸器滤芯,将涵盖本研究中99%的记录分钟通气量以及99.9%的预测峰值和瞬时流速,并且能更准确地反映剧烈运动期间的人体呼吸。

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