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首页> 外文期刊>Respiratory physiology & neurobiology >Evolution and development of fetal membranes and placentation in amniote vertebrates.
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Evolution and development of fetal membranes and placentation in amniote vertebrates.

机译:羊膜脊椎动物胎膜的进化和胎盘发育。

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摘要

We review aspects of fetal membrane evolution and patterns of placentation within amniotes, the most successful land vertebrates. Special reference is given to embryonic gas supply. The evolution of fetal membranes is a prerequisite for reproduction independent from aquatic environments. Starting from a basically similar repertoire of fetal membranes - the amnion, chorion, allantois and yolk sac, which form the cleidoic egg - different structural solutions for embryonic development have evolved. In oviparous amniotes the chorioallantoic membrane is the major site for the exchange of respiratory gases between fetus and outer environment. The richly vascularised yolk sac and allantois in concert with the chorion play an important role in the evolution of placentation in various viviparous amniotes. Highly complex placentas have evolved independently among squamate sauropsids and in marsupial and placental mammals. In conclusion, there seems to be a natural force to improve gas exchange processes in intrauterine environments by reducing the barrier between the blood systems and optimising the exchange areas.
机译:我们回顾了胎儿膜进化的各个方面以及羊膜(最成功的陆地脊椎动物)内胎盘的分布模式。特别参考了胚胎气体的供应。胎膜的进化是独立于水生环境进行繁殖的前提。从基本相似的胎膜库开始,即羊膜,绒毛膜,尿囊和卵黄囊,它们形成了卵状卵,为胚胎发育开发了不同的结构解决方案。在卵生羊膜中,绒毛膜尿囊膜是胎儿与外部环境之间呼吸气体交换的主要场所。与绒毛膜一致的富含血管的卵黄囊和尿囊在各种胎生羊膜胎盘的形成中起重要作用。高度复杂的胎盘在鳞茎蜥脚类动物以及有袋类和胎盘类哺乳动物中已经独立进化。总之,通过减少血液系统之间的屏障和优化交换区域,似乎自然有力改善子宫内环境中的气体交换过程。

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