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Changes of particle deposition caused by different breathing patterns during active lung simulation

机译:不同呼吸模式引起的粒子沉积在活性肺模拟中的变化

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Aerosols are an integral part of everyday life and as such are inhaled under various conditions and circumstances. These may vary based on the health and activity status of an individual. The aim of this work is to analyse the particle deposition mechanisms during the simulation of three different breathing patterns using an aerosol representing the PM1 fraction of fine particles. The active electro-mechanical lung simulator xPULM is utilized as a driving force and is combined with a non-invasive direct reading optical aerosol measurement system. Results show differences between the number of deposited particles for the three breathing patterns and for the three typical size ranges of airborne particles. Overall, the presented approach demonstrates the possibility of determining the changes of aerosol uptake based on different breathing patterns using the electro-mechanical lung simulator and laboratory produced aerosols. Further measurement cycles must be performed in order to validate the found interactions and to characterize the major influencing parameters.
机译:气溶胶是日常生活中不可或缺的一部分,因此在各种条件和情况下吸入。这些可能根据个人的健康和活动状态而有所不同。这项工作的目的是在使用表示PM1部分的细颗粒的气溶胶模拟三种不同的呼吸模式期间分析粒子沉积机制。主动电力机械肺模拟器XPULM用作驱动力,并与非侵入性直接读取光学气溶胶测量系统组合。结果表明三个呼吸图案的沉积颗粒数量与空气传播颗粒的三个典型尺寸范围之间的差异。总的来说,所提出的方法证明了使用机械肺模拟器和实验室产生的气溶胶基于不同的呼吸模式来确定气溶胶吸收变化的可能性。必须执行进一步的测量周期,以验证发现的相互作用并表征主要影响参数。

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