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用于模拟大气道的计算、离体和组织工程技术。

Computational, Ex Vivo, and Tissue Engineering Techniques for Modeling Large Airways.

机构信息

Department of Biomedical Engineering, Virginia Commonwealth University, Richmond, VA, USA.

出版信息

Adv Exp Med Biol. 2023;1413:107-120. doi: 10.1007/978-3-031-26625-6_6.

Abstract

The large airways are a critical component of the respiratory tree serving both an immunoprotective role and a physiological role for ventilation. The physiological role of the large airways is to move a large amount of air to and from the gas exchange surfaces of the alveoli. This air becomes divided along the respiratory tree as it moves from the large airways to smaller airways, bronchioles, and alveoli. The large airways are incredibly important from an immunoprotective role as the large airways are an early line of defense against inhaled particles, bacteria, and viruses. The key immunoprotective feature of the large airways is mucus production and mucociliary clearance mechanism. Each of these key features of the lung is important from both a basic physiology perspective and an engineering perspective for regenerative medicine. In this chapter, we will cover the large airways from an engineering perspective to highlight existing models of the large airways as well as future directions for modeling and repair.

摘要

大气道是呼吸系统的一个关键组成部分,具有免疫保护作用和通气的生理作用。大气道的生理作用是将大量空气吸入和呼出到肺泡的气体交换表面。随着空气从大气道移动到更小的气道、细支气管和肺泡,空气会沿着呼吸道分支。大气道在免疫保护方面非常重要,因为大气道是抵御吸入的颗粒、细菌和病毒的第一道防线。大气道的主要免疫保护特征是黏液分泌和纤毛清除机制。这些肺部的关键特征从基础生理学和再生医学的工程学角度来看都非常重要。在本章中,我们将从工程学的角度来介绍大气道,以突出大气道的现有模型以及建模和修复的未来方向。

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