Literature DB >> 23606929

Structure and composition of pulmonary arteries, capillaries, and veins.

Mary I Townsley1.   

Abstract

The pulmonary vasculature comprises three anatomic compartments connected in series: the arterial tree, an extensive capillary bed, and the venular tree. Although, in general, this vasculature is thin-walled, structure is nonetheless complex. Contributions to structure (and thus potentially to function) from cells other than endothelial and smooth muscle cells as well as those from the extracellular matrix should be considered. This review is multifaceted, bringing together information regarding (i) classification of pulmonary vessels, (ii) branching geometry in the pulmonary vascular tree, (iii) a quantitative view of structure based on morphometry of the vascular wall, (iv) the relationship of nerves, a variety of interstitial cells, matrix proteins, and striated myocytes to smooth muscle and endothelium in the vascular wall, (v) heterogeneity within cell populations and between vascular compartments, (vi) homo- and heterotypic cell-cell junctional complexes, and (vii) the relation of the pulmonary vasculature to that of airways. These issues for pulmonary vascular structure are compared, when data is available, across species from human to mouse and shrew. Data from studies utilizing vascular casting, light and electron microscopy, as well as models developed from those data, are discussed. Finally, the need for rigorous quantitative approaches to study of vascular structure in lung is highlighted.
© 2012 American Physiological Society

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Year:  2012        PMID: 23606929      PMCID: PMC3630377          DOI: 10.1002/cphy.c100081

Source DB:  PubMed          Journal:  Compr Physiol        ISSN: 2040-4603            Impact factor:   9.090


  342 in total

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4.  Remodeling of lung interstitium but not resistance vessels in canine pacing-induced heart failure.

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5.  Microfocal X-ray CT imaging and pulmonary arterial distensibility in excised rat lungs.

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  77 in total

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Authors:  Wiltz W Wagner; Eric M Jaryszak; Amanda J Peterson; Claire M Doerschuk; H Glenn Bohlen; Judy A C King; Judith A Tanner; Edward S Crockett; Robb W Glenny; Robert G Presson
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4.  Pulmonary vascular mechanical consequences of ischemic heart failure and implications for right ventricular function.

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Review 6.  Matrix biomechanics and dynamics in pulmonary fibrosis.

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Review 7.  Lung Pericytes and Resident Fibroblasts: Busy Multitaskers.

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8.  First in vivo magnetic particle imaging of lung perfusion in rats.

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Review 10.  Lung Circulation.

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