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A new method for measuring lung deposition efficiency of airborne nanoparticles in a single breath

机译:一种新的一次呼吸测量空气纳米粒子肺沉积效率的新方法

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Assessment of respiratory tract deposition of nanoparticles is a key link to understanding their health impacts. An instrument was developed to measure respiratory tract deposition of nanoparticles in a single breath. Monodisperse nanoparticles are generated, inhaled and sampled from a determined volumetric lung depth after a controlled residence time in the lung. The instrument was characterized for sensitivity to inter-subject variability, particle size (22, 50, 75 and 100?nm) and breath-holding time (3-20?s) in a group of seven healthy subjects. The measured particle recovery had an inter-subject variability 26-50 times larger than the measurement uncertainty and the results for various particle sizes and breath-holding times were in accordance with the theory for Brownian diffusion and values calculated from the Multiple-Path Particle Dosimetry model. The recovery was found to be determined by residence time and particle size, while respiratory flow-rate had minor importance in the studied range 1-10?L/s. The instrument will be used to investigate deposition of nanoparticles in patients with respiratory disease. The fast and precise measurement allows for both diagnostic applications, where the disease may be identified based on particle recovery, and for studies with controlled delivery of aerosol-based nanomedicine to specific regions of the lungs.
机译:纳米颗粒的呼吸道沉积评估是理解其健康影响的关键环节。开发了一种仪器以测量单一呼吸中纳米颗粒的呼吸道沉积。在肺中受控停留时间后,产生,吸入和取出并从确定的体积肺深度取样。该仪器的特征在于对受试者间变异性,粒度(22,50,75和100μm)和呼吸持续时间(3-20μl)的敏感性,在七个健康受试者中的呼吸持续时间(3-20μl)。测量的颗粒回收的互联间变性比测量不确定性大26-50倍,并且各种粒度和呼吸持续时间的结果符合来自多路径粒子剂量测定法计算的褐色扩散和值的理论模型。发现恢复是通过停留时间和粒度确定的,而研究范围1-10的呼吸流量差异很小。该仪器将用于研究呼吸疾病患者纳米颗粒的沉积。快速且精确的测量允许诊断应用,其中疾病可以基于颗粒回收来鉴定,以及用于对肺部特定区域进行气溶胶基纳米疗程的研究。

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