古大气促进了滑翔过渡到动力飞行在纪蝙蝠,Onychonycteris finneyiyi
Norberto P Giannini1,2,3, Alan Cannell4,5, Lucila I Amador6
1Unidad Ejecutora Lillo, CONICET-Fundación Miguel Lillo, Tucumán, Argentina. ngiannini@amnh.org.
Communications biology
|March 27, 2024
概括
最古老的化石蝙蝠,Onychonycteris finneyi,可以滑翔和飞行. 空气动力学建模表明了滑翔到动力飞行的过渡,有助于更密集的Eocene大气.
科学领域:
- 古生物学的古生物学
- 空气动力学 航空动力学
- 进化生物学 进化生物学
背景情况:
- 蝙蝠的动力飞行的进化,唯一的飞行哺乳动物,是正在进行的科学辩论的主题.
- 了解这种转变需要分析早期蝙蝠化石及其飞行能力.
研究的目的:
- 重建和分析Onychonycteris finneyi的飞行能力,这是最古老的完整化石蝙蝠.
- 调查纪的环境条件及其对早期蝙蝠飞行的潜在影响.
主要方法:
- 空气动力学模型被用来模拟Onychonycteris finneyi.yi的飞行.
- 用古地质化学的代理来估计纪的大气密度.
- 进行了Onychonycteris形态的数字延长,以创建中间形式.
主要成果:
- 菲尼伊杆菌 (Onychonycteris finneyi) 能够进行滑翔和动力飞行.
- 飞行能力在常态大气和高密度大气条件下进行了评估.
- 越来越大的一面比的梯度显示出更好的滑翔性能,促进过渡到动力飞行.
结论:
- 这些发现支持蝙蝠的"树下"滑翔过渡到动力飞行.
- 一个超密集的纪大气层可能在促进早期蝙蝠的动力飞行方面发挥了作用.
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