Bone histological correlates for air sacs and their implications for understanding the origin of the dinosaurian respiratory system
Гистологические корреляты воздушных мешков в костной ткани и их значение для понимания происхождения дыхательной системы динозавров
2018-01-01
SCID: 54.1/w5b785br
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Sharpey's fibresair sacsbone histologydinosaurian respiratory systempneumosteal tissue
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Abstract (AI)
Air sacs are an important component of the avian respiratory system, and corresponding structures also were crucial for the evolution of sauropod dinosaur gigantism. Inferring the presence of air sacs in fossils so far is restricted to bones preserving internal pneumatic cavities and foramina as osteological correlates. We here present bone histological correlates for air sacs as a new potential identification tool for these elements of the respiratory system. The analysis of several avian and non-avian dinosaur samples revealed delicate fibres in secondary trabecular and secondary endosteal bone that in the former case (birds) is known or in the latter (non-avian dinosaurs) assumed to have been in contact with air sacs, respectively. The bone histology of this 'pneumosteal tissue' is markedly different from those regions where muscles attached presenting classical Sharpey's fibres. The pneumatized bones of several non-dinosaurian taxa do not exhibit the characteristics of this 'pneumosteum'. Our new histology-based approach thus can be instrumental in reconstructing the origin of air sacs among dinosaurs and hence for our understanding of this remarkable evolutionary novelty of the respiratory system.
Key Findings
1
Air-sac-associated regions contain delicate fibres in secondary trabecular bone in birds and secondary endosteal bone in non-avian dinosaurs.
2
Histology-based identification of pneumosteum could help reconstruct the evolutionary origin of air sacs among dinosaurs.
3
Pneumatized bones of several non-dinosaurian taxa lack the characteristic pneumosteum, suggesting greater specificity for dinosaurian air-sac inference.
4
The study identifies bone-histological correlates of air sacs, providing a potential tool beyond internal pneumatic cavities and foramina.
5
This proposed “pneumosteal tissue” differs markedly from muscle-attachment regions characterized by classical Sharpey’s fibres.
Research Object
avian and non-avian dinosaur bones associated with air sacs
Research Subject
bone-histological correlates of air sacs, specifically pneumosteal tissue and its implications for reconstructing the origin of the dinosaurian respiratory system
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2018-01-01
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