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Estimating Lung Deposition of Fungal Spores Using Actual Airborne Spore Concentrations and Physiological Data

机译:使用实际的空气孢子浓度和生理数据估算真菌孢子的肺部沉积

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摘要

Exposure to bioaerosols has been implicated in adverse respiratory symptoms, infectious diseases, and bioterrorism. Although these particles have been measured within residential and occupational settings in multiple studies, the deposition of bioaerosol particles within the human respiratory system has been only minimally explored. This paper uses real-world environmental measurement data of total fungal spores using Air-o-Cell cassettes in 16 different apartments and residents' physiological data in those apartments to predict respiratory deposition of the spores. The airborne spore concentrations were measured during the spring, summer, and fall. The respiratory deposition of five most prevalent spore genera-Ascospores, Aspergillus, Basidiospores, Cladosporium, and Myxomycetes-was predicted using three empirical models: the Multiple Path Particle Dosimetry model, using both the Yeh and age-specific versions, and the Bioaerosol Adaptation of the International Committee on Radiological Protection's Lung deposition model. The predicted total deposited number of spores was highest for Ascospores and Cladosporium. While the majority of spores deposit were in the extrathoracic region, there is a significant deposition for both Aspergillus and Cladosporium in the alveolar region, potentially leading to the development of aspergillosis or allergic asthma. Although the dose-response relationship is unknown, the estimate of the actual spore deposition could be the first step in determining such a relationship.
机译:暴露于生物对生物溶胶溶解于不良呼吸道症状,传染病和生物恐怖主义。尽管在多项研究中已经在住宅和职业环境中测量了这些颗粒,但是在人呼吸系统内的生物溶胶颗粒的沉积仅仅是最小的探索。本文采用使用16个不同的公寓和居民在这些公寓生理数据空气 - 邻 - 细胞盒来预测孢子的呼吸沉积总真菌孢子的真实世界环境的测量数据。在春季,夏季和秋季测量空气孢子浓度。五个最常见的孢子属,子囊孢子,黑,担孢子,芽枝霉和呼吸道沉积黏菌,是使用三个经验模型预言:多径粒子放射量测定模型,同时使用星爷和特定年龄的版本,和的生物气溶胶适应国际放射保护肺沉积模型委员会。预测总沉积的孢子数对于囊孢子和囊孢子孢子最高。虽然大多数孢子矿床在脱差区域中,肺泡区的曲霉和囊孢菌有很大沉积,可能导致曲霉病或过敏性哮喘的发育。虽然剂量 - 反应关系未知,但实际孢子沉积的估计可以是确定这种关系的第一步。

著录项

  • 来源
    《Environmental Science & Technology》 |2021年第3期|1852-1863|共12页
  • 作者单位

    Environmental and Occupational Health Science Institute and Department of Environmental Sciences Rutgers University Piscataway New Jersey 08854 United States;

    Department of Environmental Sciences Rutgers University New Brunswick New Jersey 08901 United States Bureau of Public Health Statistics and Informatics Division of Public Health Services New Hampshire Department of Health and Human Services Concord New Hampshire 03301 United States;

    Department of Environmental Sciences Rutgers University New Brunswick New Jersey 08901 United States;

    Department of Environmental Sciences Rutgers University New Brunswick New Jersey 08901 United States Battelle Dayton Ohio 05439 United States;

    Edward J. Bloustein School of Planning and Public Policy Rutgers University New Brunswick New Jersey 08901 United States;

    Edward J. Bloustein School of Planning and Public Policy Rutgers University New Brunswick New Jersey 08901 United States;

    Edward J. Bloustein School of Planning and Public Policy Rutgers University New Brunswick New Jersey 08901 United States;

    Department of Technology Culture & Society Polytechnic Institute of New York University Brooklyn New York 11201 United States;

    Edward J. Bloustein School of Planning and Public Policy Rutgers University New Brunswick New Jersey 08901 United States;

    Department of Environmental Sciences Rutgers University New Brunswick New Jersey 08901 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    boaerosols; prticle deposition; hman lung;

    机译:Boaerosols;Prrticle沉默;霍曼肺;

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