Literature DB >> 6881699

Tracheobronchial airway structure as revealed by casting techniques.

R F Phalen, M J Oldham.   

Abstract

Research quality tracheobronchial airway casts, prepared in the intact thorax, have proved to be useful in comparative mammalian anatomic studies. Grossly, casts trimmed free of alveoli are quite different in appearance for different species. Overall organ shape, tracheal length/diameter ratio, presence or absence of a tracheal bronchus, and degree of branching symmetry constitute the major gross characteristics. Detailed morphometric measurements performed on such casts reveal important species differences in branch shape, number of divisions in the tree, and variations in such structure as a function of airway generation number. Of the mammalian tracheobronchial casts examined to date, those of humans have several distinctive characteristics. Their overall shape is the most nearly spherical; most other mammals have lungs that are significantly longer along the tracheal axis in relation to their width or thickness. Human branches are typically relatively symmetric with respect to both daughter tube diameter ratio and daughter branch angle ratio. In short, of all of the studied mammalian lungs those of humans appear to be the least heterogeneous.

Entities:  

Mesh:

Year:  1983        PMID: 6881699     DOI: 10.1164/arrd.1983.128.2P2.S1

Source DB:  PubMed          Journal:  Am Rev Respir Dis        ISSN: 0003-0805


  12 in total

1.  An official research policy statement of the American Thoracic Society/European Respiratory Society: standards for quantitative assessment of lung structure.

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Review 3.  Use of computational fluid dynamics deposition modeling in respiratory drug delivery.

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4.  Evaluation of a Pasteurella multocida Respiratory Disease Induction Model for Goats (Capra aegagrus hircus).

Authors:  Joe S Smith; Jonathan P Mochel; Yeon-Jung Seo; Amanda P Ahrens; Ronald W Griffith
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5.  Morphometric differences between central vs. surface acini in A/J mice using high-resolution micro-computed tomography.

Authors:  Abhilash S Kizhakke Puliyakote; Dragoş M Vasilescu; John D Newell; Ge Wang; Ewald R Weibel; Eric A Hoffman
Journal:  J Appl Physiol (1985)       Date:  2016-05-12

6.  Quantitative in vivo assessment of lung microstructure at the alveolar level with hyperpolarized 3He diffusion MRI.

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Review 7.  Deposition and biokinetics of inhaled nanoparticles.

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8.  Development of a rhesus monkey lung geometry model and application to particle deposition in comparison to humans.

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Journal:  Inhal Toxicol       Date:  2012-11       Impact factor: 2.724

Review 9.  Transport of gases between the environment and alveoli--theoretical foundations.

Authors:  James P Butler; Akira Tsuda
Journal:  Compr Physiol       Date:  2011-07       Impact factor: 9.090

Review 10.  Diffusion lung imaging with hyperpolarized gas MRI.

Authors:  Dmitriy A Yablonskiy; Alexander L Sukstanskii; James D Quirk
Journal:  NMR Biomed       Date:  2015-12-16       Impact factor: 4.044

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