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Contribution of Visible Surface Mold to Airborne Fungal Concentration as Assessed by Digital Image Quantification

Chun‐Chieh Tseng, Ning Huang, Chia‐Jung Hsieh +2 more2021PathogensJournal Article
10.3390/pathogens10081032PubMedFree full text
Respiratory/Sinus
Indoor Mold (Stachybotrys, Aspergillus, etc.)

Abstract

The rapid monitoring of total fungi, including air and surface fungal profiling, is an important issue. Here, we applied air and surface sampling, combined with digital image quantification of surface mold spots, to evaluate the contribution of surface fungi to airborne fungal concentrations. Cladosporium, Penicillium, Aspergillus, and yeast often appeared in the air or on wall surfaces during sampling. The indoor/outdoor concentration ratios (I/O ratios) demonstrated that the airborne concentrations of commonly found fungal genera outdoors were higher than those indoors (median I/O ratio = 0.65-0.91), excluding those of Penicillium and yeast. Additionally, the surface density (fungal concentration/area) of individual fungi showed no significant correlation with the airborne concentration, excluding that of Geotrichum. However, if a higher surface ratio (>0.00031) of mold spots appeared in the total area of an indoor environment, then the concentrations of Aspergillus and Geotrichum in the air increased significantly. Our results demonstrated that the airborne concentration of indoor fungi is significantly correlated with the outdoor concentration. A higher density of surface fungi does not necessarily contribute to a high fungal concentration in the air. In contrast to fungal density, quantification of the surface fungal area is recommended to assess the risk of surface fungi propelling into the air.

Cited By (3)

  • Fungal Contamination of Building Materials and the Aerosolization of Particles and Toxins in Indoor Air and Their Associated Risks to Health: A ReviewToxins · 2023
  • Mould Surface Sampling Techniques and Collection Efficiency on Paper-Faced Gypsum BoardJournal of Bacteriology & Mycology Open Access · 2022
  • Issues with percent coverage-based non-viable fungal analysis and new methodology for enumeration-based analysisJournal of Bacteriology & Mycology Open Access · 2023

References (3)

  • Populations and determinants of airborne fungi in large office buildings.Environmental Health Perspectives · 2002
  • An Environmental Assessment of Mold Concentrations and Potential Mycotoxin Exposures in the Greater Southeast Texas AreaJournal of Environmental Science and Health Part A · 2003
  • Respiratory and Allergic Health Effects of Dampness, Mold, and Dampness-Related Agents: A Review of the Epidemiologic EvidenceEnvironmental Health Perspectives · 2011

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