Numerical density of alveoli in the human lung--measurement using serial thin slices as three-dimensional probes

H Kitaoka1

  • 1Department of Internal Medicine, Kitaoka Hospital, Kurayoshi.

Insights

This study estimated alveolar numerical density in a lung specimen, finding it uniformly distributed. This confirms assumptions used in conventional stereological methods for lung research.

Area of Science:

  • Pulmonary Anatomy
  • Stereology
  • Quantitative Pathology

Background:

  • Accurate estimation of alveolar numerical density is crucial for understanding lung structure and function.
  • Previous stereological methods rely on the assumption of uniform alveolar distribution.

Purpose of the Study:

  • To estimate the numerical density of alveoli in a human lung specimen.
  • To validate the assumption of uniform alveolar distribution within the lung.

Main Methods:

  • Surgical lung specimen fixation via intrabronchial infusion (polyethylene glycol and formalin).
  • Preparation of 36 serial slices (0.2 mm thickness) and 3-D sampling probes (2.0 x 2.0 x 0.2 mm).
  • Computer-assisted 3-D reconstruction and counting using the disector rule.

Main Results:

  • Mean alveolar numerical density determined as 121/mm³ (SD = 5.6).
  • No significant difference in density observed between two selected acini.
  • No significant difference found between central and peripheral regions within each acinus.

Conclusions:

  • The numerical density of alveoli is uniformly distributed throughout the lung.
  • This finding supports the validity of conventional stereological methods in lung research.