Respiratory turbinates of canids and felids: a quantitative comparison

生物 种间竞争 涡轮机 体积热力学 解剖 动物 生态学 鼻子 量子力学 物理
作者
Blaire Van Valkenburgh,Jessica M. Theodor,Anthony R. Friscia,Ari Pollack,Timothy B. Rowe
出处
期刊:Journal of Zoology [Wiley]
卷期号:264 (3): 281-293 被引量:72
标识
DOI:10.1017/s0952836904005771
摘要

Abstract The respiratory turbinates of mammals are complex bony plates within the nasal chamber that are covered with moist epithelium and provide an extensive surface area for the exchange of heat and water. Given their functional importance, maxilloturbinate size and structure are expected to vary predictably among species adapted to different environments. Here the first quantitative analysis is provided of maxilloturbinate structure based on high‐resolution computed tomography (CT) scans of the skulls of eight canid and seven felid species. The key parameters examined were the density of the maxilloturbinate bones within the nasal chamber and how that density varied along the air pathway. In both canids and felids, total maxilloturbinate chamber volume and bone volume increased with body size, with canids having c. 1.5–2.0 times the volume of maxilloturbinate than felids of similar size. In all species, the volume of the maxilloturbinates varies from rostral to caudal, with the peak volume occurring approximately midway, close to where airway cross‐sectional area is greatest. Interspecific differences among canids or felids in maxilloturbinate density were not consistent with adaptive explanations, i.e. the densest maxilloturbinates were not associated with species living in arid or cold habitats. Some of the observed variation in maxilloturbinate form might reflect a need for both low‐and high‐resistance pathways for airflow under alternative conditions.
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