Literature DB >> 23571366

Challenge of N95 filtering facepiece respirators with viable H1N1 influenza aerosols.

Delbert A Harnish1, Brian K Heimbuch, Michael Husband, April E Lumley, Kimberly Kinney, Ronald E Shaffer, Joseph D Wander.   

Abstract

OBJECTIVE. Specification of appropriate personal protective equipment for respiratory protection against influenza is somewhat controversial. In a clinical environment, N95 filtering facepiece respirators (FFRs) are often recommended for respiratory protection against infectious aerosols. This study evaluates the ability of N95 FFRs to capture viable H1N1 influenza aerosols. METHODs. Five N95 FFR models were challenged with aerosolized viable H1N1 influenza and inert polystyrene latex particles at continuous flow rates of 85 and 170 liters per minute. Virus was assayed using Madin-Darby canine kidney cells to determine the median tissue culture infective dose (TCID50). Aerosols were generated using a Collison nebulizer containing H1N1 influenza virus at 1 x 10(8) TCID50/mL. To determine filtration efficiency, viable sampling was performed upstream and downstream of the FFR. RESULTS. N95 FFRs filtered 0.8-μm particles of both H1N1 influenza and inert origins with more than 95% efficiency. With the exception of 1 model, no statistically significant difference in filtration performance was observed between influenza and inert particles of similar size. Although statistically significant differences were observed for 2 models when comparing the 2 flow rates, the differences have no significance to protection. CONCLUSIONS. This study empirically demonstrates that a National Institute for Occupational Safety and Health-approved N95 FFR captures viable H1N1 influenza aerosols as well as or better than its N95 rating, suggesting that a properly fitted FFR reduces inhalation exposure to airborne influenza virus. This study also provides evidence that filtration efficiency is based primarily on particle size rather than the nature of the particle's origin.

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Year:  2013        PMID: 23571366      PMCID: PMC4646082          DOI: 10.1086/670225

Source DB:  PubMed          Journal:  Infect Control Hosp Epidemiol        ISSN: 0899-823X            Impact factor:   3.254


  15 in total

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Authors:  J P Duguid
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3.  Workplace protection factors for an N95 filtering facepiece respirator.

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4.  The size and concentration of droplets generated by coughing in human subjects.

Authors:  Shinhao Yang; Grace W M Lee; Cheng-Min Chen; Chih-Cheng Wu; Kuo-Pin Yu
Journal:  J Aerosol Med       Date:  2007

5.  Comparison of workplace protection factors for different biological contaminants.

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6.  Influenza infection risk and predominate exposure route: uncertainty analysis.

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7.  Total inward leakage of nanoparticles through filtering facepiece respirators.

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8.  A pandemic influenza preparedness study: use of energetic methods to decontaminate filtering facepiece respirators contaminated with H1N1 aerosols and droplets.

Authors:  Brian K Heimbuch; William H Wallace; Kimberly Kinney; April E Lumley; Chang-Yu Wu; Myung-Heui Woo; Joseph D Wander
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  11 in total

1.  Assessment of influenza virus exposure and recovery from contaminated surgical masks and N95 respirators.

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2.  Development of personal protective equipment for the COVID-19 pandemic in Thailand and technical aspects of testing gown materials.

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3.  Validation and application of models to predict facemask influenza contamination in healthcare settings.

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Journal:  J Thorac Dis       Date:  2018-03       Impact factor: 2.895

5.  Relative survival of Bacillus subtilis spores loaded on filtering facepiece respirators after five decontamination methods.

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Journal:  Indoor Air       Date:  2018-05-31       Impact factor: 5.770

Review 6.  Facial protection for healthcare workers during pandemics: a scoping review.

Authors:  Laura R Garcia Godoy; Amy E Jones; Taylor N Anderson; Cameron L Fisher; Kylie M L Seeley; Erynn A Beeson; Hannah K Zane; Jaime W Peterson; Peter D Sullivan
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7.  A comparison of facemask and respirator filtration test methods.

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Journal:  J Occup Environ Hyg       Date:  2017-02       Impact factor: 2.155

8.  Filtration efficiency of surgical sterilization fabric for respiratory protection during COVID-19 pandemic.

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9.  Efficacy of masks and face coverings in controlling outward aerosol particle emission from expiratory activities.

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10.  Perception of health and educational risks amongst dental students and educators in the era of COVID-19.

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