We compare the effectiveness of morphometric methods for estimating lung parameters. Various stereological methods are applied on human lungs and described in detail. The lung volume was estimated by Cavalieri's principle and by fluid displacement. Both methods are reliable, but Cavalieri's principl
Stereological Estimates of Alveolar Number and Size and Capillary Length and Surface Area in Mice Lungs
✍ Scribed by Juliane Knust; Matthias Ochs; Hans Jørgen G. Gundersen; Jens R. Nyengaard
- Publisher
- Wiley (John Wiley & Sons)
- Year
- 2009
- Tongue
- English
- Weight
- 320 KB
- Volume
- 292
- Category
- Article
- ISSN
- 1932-8486
- DOI
- 10.1002/ar.20747
No coin nor oath required. For personal study only.
✦ Synopsis
Abstract
The major function of the lung is gas exchange and depends on alveolar and capillary parameters such as surface area and volume. The number of alveoli may report on the nature of structural changes in lung parenchyma during development, illness or changing environmental factors. We therefore developed an efficient and easily applicable stereological design for estimating and monitoring these structural parameters in the mouse lung. The estimation of volume fractions of different lung compartments has been carried out by point counting. A combination of cycloid grids superimposed on vertical sections was used to estimate the capillary surface area with isotropic test lines. Capillary length could be measured using the harmonic mean of the surface weighted diameter. The Euler characteristic applied in the physical fractionator with varying but known sampling fractions (Horovitz‐Thompson estimator) enabled us to estimate alveolar number. In adult mice lungs, we obtained total values for alveolar number of 2.31 × 10^6^ alveoli in a pair of lungs, alveolar surface area of 82.2 cm^2^, capillary surface area of 124 cm^2^, and capillary length of 1.13 km. All values are corrected for tissue shrinkage. With this study we present a highly efficient combination of several design‐based stereological tools for the unbiased estimation of alveolar number and volume as well as length, surface area, and diameter of capillaries in the mice lung. Anat Rec, 292:113–122, 2009. © 2008 Wiley‐Liss, Inc.
📜 SIMILAR VOLUMES
## Abstract The hippocampal formation is a neuroanatomically well‐defined region of the brain involved in memory processes. In view of the functional importance of the region and its involvement in a number of brain pathologies, including Alzheimer's disease and temporal lobe epilepsy, a quantitati
## Abstract The opportunities of confocal microscopy applied to morphometry of microscopical structures are presented and demonstrated on stereological methods based on evaluation of optical sections within a thick slice and using computer‐generated virtual test probes. Such methods, allowing arbit
The number and volume of pulmonary neuroepithelial bodies (NEBs) of 1-and 4-week-old hamsters were estimated using unbiased stereological principles and systematic sampling techniques. For comparative purposes, volume estimations were also made in the carotid body, the parathyroid gland, and the adr