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May 18, 2026American Journal of Veterinary Research0 citationsOpen Access

The impacts of obesity on the avian respiratory system

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AMAracely MartinezMEM. Scott EcholsESEmma R. Schachner

Key Points

  • This research aims to understand how obesity affects the anatomy of the lower respiratory system in various bird species.
  • Utilized micro-CT imaging of live sedated birds to visualize the lower respiratory system
  • Built 3D anatomical models to extract and analyze air sac volumes
  • Examined white cockatoos, red-tailed hawks, and New World vultures for comparisons between obese and nonobese subjects.
  • Internal adipose tissue reduced the volume and altered displacement of air sacs in all examined obese birds.
  • Obese specimens showed compression of caudal air sacs, leading to total volume reduction and expansion of cranial air sacs into surrounding areas.
  • Current body condition scoring methods do not adequately account for how internal fat distributions affect avian anatomy.

Abstract

Abstract Objective To visualize and describe the anatomy of the lower respiratory system in obese and nonobese white cockatoos, red-tailed hawks, and New World vultures, and discuss the use of current body condition scoring (BCS) methods in avian veterinary practice. Methods Using micro-CT of live, sedated obese and nonobese birds, 3D anatomical models were built to visualize and extract air sac volumes. All live birds were imaged for clinical purposes unrelated to this specific study, and the DICOM image stacks were later donated to the project. Results Internal adipose tissue affected the volume and displacement of the air sacs in all obese birds examined. In obese and egg-bearing specimens, the caudal group of air sacs (abdominal and caudal thoracic) was compressed, resulting in a reduced total volume, while the cranial group of air sacs (cervical, interclavicular, and cranial thoracic) and their diverticula often expanded into the cervical and axillary regions. Conclusions The effects of obesity on air sac volume and shape varied in the birds examined, and further work is needed to determine the functional implications of these differences. Additionally, current avian BCS methods do not account for internal adipose distribution or its potential anatomical effects in avian patients. Clinical Relevance Excess internal adipose may alter air sac volume and displacement patterns, with potential implications for clinical and perioperative management. Species-specific BCS methods should be employed when possible to assess obesity in birds.

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Cite This Study

Martinez et al. (2026) studied this question.

synapsesocial.com/papers/6a0aac2b5ba8ef6d83b6faa6https://doi.org/10.2460/ajvr.25.12.0456
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