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亚肺小叶肺泡管的自组织模式。

Self-organizing pattern of subpleural alveolar ducts.

机构信息

Johns Hopkins University, Baltimore, Maryland, US.

出版信息

Sci Rep. 2020 Feb 21;10(1):3185. doi: 10.1038/s41598-020-59752-3.

Abstract

In this study we have utilized an optical clearing method to allow visualization of a heretofore undescribed subpleural acinar structural organization in the mammalian lung. The clearing method enables visualization of the lung structure deep below the visceral pleura in intact inflated lungs. In addition to confirming previous observations that the immediate subpleural alveoli are uniform in appearance, we document for the first time that the subpleural lung parenchyma is much more uniformly organized than the internal parenchyma. Specifically, we report that below the surface layer of alveoli, there is a striking parallel arrangement of alveolar ducts that all run perpendicular to the visceral pleural surface. A three dimensional visualization of alveolar ducts allowed for a calculation of the average inner to outer duct diameter ratio of 0.53 in these subpleural ducts. This unique, self-organizing parallel duct structure likely impacts both elastic recoil and the transmission of tethering forces in healthy and diseased lungs.

摘要

在这项研究中,我们利用一种光学透明化方法来观察哺乳动物肺部以前未被描述的亚胸膜腺泡结构组织。这种透明化方法能够在完整充气的肺中观察到内脏胸膜下的深层肺结构。除了证实先前的观察结果,即紧邻胸膜下的肺泡在外观上是均匀的,我们首次记录到胸膜下的肺实质比内部实质组织更加均匀地组织。具体来说,我们报告说,在肺泡的表面层下方,有一个显著的平行排列的肺泡管,它们都垂直于内脏胸膜表面。肺泡管的三维可视化允许计算这些胸膜下肺泡管的平均内到外管直径比为 0.53。这种独特的、自组织的平行管结构可能会影响健康和患病肺部的弹性回缩和牵拉力量的传递。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/802b/7035422/4af34bf6dd43/41598_2020_59752_Fig1_HTML.jpg

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