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眼循环系统的功能解剖:鲸类眼睛的血管铸型

Functional anatomy of the ocular circulatory system: vascular corrosion casts of the cetacean eye.

作者信息

Ninomiya Hiroyoshi, Yoshida Emi

机构信息

Department of Laboratory Animal Science, Azabu University, 1-17-71 Fuchinobe Sagamihara, Kanagawa, 229-8501, Japan.

出版信息

Vet Ophthalmol. 2007 Jul-Aug;10(4):231-8. doi: 10.1111/j.1463-5224.2007.00544.x.

Abstract

OBJECTIVE

To examine the functional anatomy of the ocular circulation in four bottlenose dolphins (Tursiops truncatus) and five melon-headed whales (Peponocephala electra).

PROCEDURE

Eyes were obtained postmortem from whales that died while in captivity and/or were found beached. Specimens from whales were investigated using scanning electron microscopy (SEM) of vascular corrosion casts and histology. The thermal characteristics of live dolphin eyes were measured using an infrared imaging system.

RESULTS

The whale eye receives its primary blood supply from the ophthalmic rete, which extends just behind the eyeball. The ophthalmic rete diverges from the basilar rete and the cervical rete via the posterior thoracic artery. The iris and ciliary processes are supplied by iridic arteries via the major arterial circle that is located around the iris edge. The retinal vessels show the holangiotic type. Choroidal arteries run in parallel arrays so as to interdigitate the densely packed choroidal veins. The venules in the conjunctival fold and palpebral conjunctiva form a well-developed venous plexus. Thermographic examination revealed that the eye shows a substantially higher degree of thermal emission than adjacent skin areas.

CONCLUSIONS

The cetacean eye is characterized by a unique vascular pattern and multivessel plexuses, which are quite different from those of terrestrial mammals. This suggests that the ocular vasculature might function as a thermoregulatory system so that the appropriate operating temperature for the photoreceptors can be maintained in a deep and cold aquatic environment. The distinctive plexuses in the orbit might also be for pooling blood in the eye to conserve oxygen during dives. The ophthalmic rete might play a role in a pressure-damping effect on cetacean ocular circulation as well.

摘要

目的

研究4只宽吻海豚(瓶鼻海豚)和5只瓜头鲸的眼循环功能解剖结构。

过程

对圈养期间死亡和/或被发现搁浅的鲸鱼进行死后眼部取材。使用血管铸型扫描电子显微镜(SEM)和组织学方法对鲸鱼标本进行研究。利用红外成像系统测量活体海豚眼睛的热特性。

结果

鲸眼的主要血液供应来自眼 rete,其延伸至眼球后方。眼 rete 通过胸后动脉与基底 rete 和颈 rete 分开。虹膜和睫状体由虹膜动脉通过位于虹膜边缘的大动脉环供应。视网膜血管呈现全血管型。脉络膜动脉呈平行排列,以便与密集排列的脉络膜静脉相互交错。结膜皱襞和睑结膜中的小静脉形成发达的静脉丛。热成像检查显示,眼睛的热发射程度明显高于相邻皮肤区域。

结论

鲸类动物的眼睛具有独特的血管模式和多血管丛,与陆生哺乳动物的截然不同。这表明眼血管系统可能起到温度调节系统的作用,以便在寒冷的深水水生环境中维持光感受器的适宜工作温度。眼眶中独特的血管丛也可能是为了在潜水时在眼睛中积聚血液以保存氧气。眼 rete 可能在鲸类动物眼循环的压力缓冲效应中也发挥作用。

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