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厚嘴海鸦在潜水时能保持身体核心部位的高温。

Brünnich's guillemots (Uria lomvia) maintain high temperature in the body core during dives.

作者信息

Niizuma Yasuaki, Gabrielsen Geir W, Sato Katsufumi, Watanuki Yutaka, Naito Yasuhiko

机构信息

Japan Society for the Promotion of Science, Hokkaido National Fisheries Research Institute, Kushiro 085-0802, Japan.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2007 Jun;147(2):438-44. doi: 10.1016/j.cbpa.2007.01.014. Epub 2007 Jan 27.

Abstract

A major challenge for diving birds, reptiles, and mammals is regulating body temperature while conserving oxygen through a reduction in metabolic processes. To gain insight into how these needs are met, we measured dive depth and body temperatures at the core or periphery between the skin and abdominal muscles simultaneously in freely diving Brünnich's guillemots (Uria lomvia), an arctic seabird, using an implantable data logger (16-mm diameter, 50-mm length, 14-g mass, Little Leonardo Ltd., Tokyo). Guillemots exhibited increased body core temperatures, but decreased peripheral temperatures, during diving. Heat conservation within the body core appeared to result from the combined effect of peripheral vasoconstriction and a high wing beat frequency that generates heat. Conversely, the observed tissue hypothermia in the periphery should reduce metabolic processes as well as heat loss to the water. These physiological effects are likely one of the key physiological adaptations that makes guillemots to perform as an efficient predator in arctic waters.

摘要

对于潜水鸟类、爬行动物和哺乳动物来说,一个主要挑战是在通过减少代谢过程来保存氧气的同时调节体温。为了深入了解这些需求是如何得到满足的,我们使用一个可植入数据记录器(直径16毫米、长度50毫米、质量14克,东京小列奥纳多有限公司),对北极海鸟厚嘴海鸦(乌燕鸥)在自由潜水时的潜水深度以及核心部位或皮肤与腹部肌肉之间外周部位的体温进行了同步测量。厚嘴海鸦在潜水时核心体温升高,但外周体温降低。核心体温的保持似乎是外周血管收缩和产生热量的高振翅频率共同作用的结果。相反,观察到的外周组织低温应该会减少代谢过程以及向水中的热量散失。这些生理效应可能是使厚嘴海鸦能够在北极水域高效捕食的关键生理适应性之一。

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