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January 23, 2026Journal of Veterinary Diagnostic Investigation0 citationsOpen Access

Microscopic anatomy of the lungs of domestic animals, mice, and rats

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KMKathleen R. MulkaRGRachael GruenwaldTYTzushan S. Yang

Key Points

  • The aim is to describe the lung's microscopic anatomy across different domestic animal species and rodents.
  • Detailed examination of lung structure across several species including cattle, horses, pigs, sheep, goats, dogs, cats, mice, and rats.
  • Comparison of pleural thickness and interlobular septa in varying species.
  • Analysis of bronchiolar transition zones and cellular composition among species.
  • Identified species-specific variations in lung structure and microanatomy.
  • Noted differences in pleura thickness and secondary lobule discernibility.
  • Illustrated how structural variations impact normal lung function and disease recognition.

Abstract

The lung is composed of conducting airways, a gas-exchange region, and a dual circulatory system. Any of these components may be altered in respiratory disease, and complicated cases can be a diagnostic challenge. For veterinary pathologists, a solid foundation in normal anatomy is essential for recognition of patterns of disease. Additionally, the structure of the lungs informs the function; therefore, knowledge of how normal structures are disrupted provides insight into the pathogenesis of lung diseases. We detail the organizational structure, microanatomy, and cell types of the lungs of several species of veterinary importance: cattle, horses, pigs, sheep, goats, dogs, cats, mice, and rats. Animals with a thick pleura and interlobular septa have associated separation of secondary lobules, whereas those with a thin pleura lack interlobular septa and have indiscernible secondary lobules. The transition between terminal bronchioles and gas-exchange regions, presence of respiratory bronchioles, and cellular composition of the bronchioles are highly variable among species. Other species variations include bronchial structure and glands, collateral ventilation, and patterns of blood supply to the conducting airways, gas-exchange regions, and pleura. Examples of histopathologic correlates offer relevance of pulmonary microanatomy to the veterinary pathologist.

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Cite This Study

Mulka et al. (2026) studied this question.

synapsesocial.com/papers/69730f59c8125b09b0d1f25chttps://doi.org/10.1177/10406387251413159
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