...
首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >Development and Performance Evaluation of an Exhaled-Breath Bioaerosol Collector for Influenza Virus
【24h】

Development and Performance Evaluation of an Exhaled-Breath Bioaerosol Collector for Influenza Virus

机译:呼出气生物气溶胶收集器的研制与性能评估

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The importance of the aerosol mode for transmission of influenza is unknown. Understanding the role of aerosols is essential to developing public health interventions such as the use of surgical masks as a source control to prevent the release of infectious aerosols. Little information is available on the number and size of particles generated by infected persons, which is partly due to the limitations of conventional air samplers, which do not efficiently capture fine particles or maintain microorganism viability. We designed and built a new sampler, called the G-II, that collects exhaled-breath particles that can be used in infectivity analyses. The G-II allows test subjects to perform various respiratory maneuvers (i.e., tidal breathing, coughing, and talking) and allows subjects to wear a mask or respirator during testing. A conventional slit impactor collects particles greater than 5.0 μm. Condensation of water vapor is used to grow remaining particles, including fine particles, to a size large enough to be efficiently collected by a 1.0 μm slit impactor and be deposited into a buffer-containing collector. We evaluated the G-II for fine particle collection efficiency with inert particle aerosols and evaluated infective virus collection using influenza A virus aerosols. Testing results showed greater than 85% collection efficiency for particles greater than 50 nm and influenza virus collection comparable with a reference SKC BioSampler~R. The new design will enable determination of exhaled infectious virus generation rate and evaluate control strategies such as wearing a surgical-type mask to prevent the release of viruses from infected persons.
机译:气溶胶模式对流感传播的重要性尚不清楚。了解气雾剂的作用对于制定公共卫生干预措施至关重要,例如使用手术口罩作为源控制措施以防止传染性气溶胶的释放。关于感染者产生的颗粒数量和大小的信息很少,这部分是由于传统的空气采样器的局限性,传统的空气采样器不能有效地捕获细颗粒或保持微生物的生存能力。我们设计并建造了一个名为G-II的新采样器,该采样器会收集呼出的呼吸颗粒,这些颗粒可用于传染性分析。 G-II允许测试对象执行各种呼吸操作(即潮气,咳嗽和说话),并允许对象在测试过程中佩戴口罩或呼吸器。传统的裂隙撞击器会收集大于5.0μm的颗粒。水蒸气的冷凝用于使剩余的颗粒(包括细颗粒)生长到足够大的尺寸,以便能够被1.0μm狭缝撞击器有效收集并沉积到含缓冲液的收集器中。我们用惰性颗粒气溶胶评估了G-II的细颗粒收集效率,并使用A型流感病毒气溶胶评估了感染性病毒的收集。测试结果表明,对于大于50 nm的颗粒,其收集效率高于85%,与参考SKC BioSampler〜R相比,流感病毒的收集效率更高。新的设计将能够确定呼出的传染性病毒的发生率,并评估控制策略,例如戴上外科手术用的口罩以防止病毒从感染者中释放出来。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号