Dong Jun, Yang Yue, Zhu Yonggang
Center for Microflows and Nanoflows, School of Mechanical Engineering and Automation, Harbin Institute of Technology, Shenzhen, Guangdong 518055, China.
Biomicrofluidics. 2022 Apr 13;16(2):021502. doi: 10.1063/5.0084415. eCollection 2022 Mar.
Understanding the dynamics of airflow in alveoli and its effect on the behavior of particle transport and deposition is important for understanding lung functions and the cause of many lung diseases. The studies on these areas have drawn substantial attention over the last few decades. This Review discusses the recent progress in the investigation of behavior of airflow in alveoli. The information obtained from studies on the structure of the lung airway tree and alveolar topology is provided first. The current research progress on the modeling of alveoli is then reviewed. The alveolar cell parameters at different generation of branches, issues to model real alveolar flow, and the current numerical and experimental approaches are discussed. The findings on flow behavior, in particular, flow patterns and the mechanism of chaotic flow generation in the alveoli are reviewed next. The different flow patterns under different geometrical and flow conditions are discussed. Finally, developments on microfluidic devices such as lung-on-a-chip devices are reviewed. The issues of current devices are discussed.
了解肺泡内气流的动力学及其对颗粒传输和沉积行为的影响,对于理解肺功能和许多肺部疾病的病因至关重要。在过去几十年中,这些领域的研究受到了广泛关注。本综述讨论了肺泡内气流行为研究的最新进展。首先提供了从肺气道树结构和肺泡拓扑结构研究中获得的信息。然后回顾了肺泡建模的当前研究进展。讨论了不同分支代的肺泡细胞参数、模拟真实肺泡流动的问题以及当前的数值和实验方法。接下来综述了关于流动行为的研究结果,特别是肺泡内的流动模式和混沌流产生机制。讨论了不同几何和流动条件下的不同流动模式。最后回顾了微流控设备(如芯片肺设备)的发展。讨论了当前设备存在的问题。