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呼吸暂停作为深潜皱鳃鲨的一种体温调节策略。

"Breath holding" as a thermoregulation strategy in the deep-diving scalloped hammerhead shark.

机构信息

Hawai'i Institute of Marine Biology, University of Hawai'i at Mānoa, Kāne'ohe, HI 96744, USA.

School of Physics and Astronomy, The University of Edinburgh, Edinburgh EH9 3FD, UK.

出版信息

Science. 2023 May 12;380(6645):651-655. doi: 10.1126/science.add4445. Epub 2023 May 11.

Abstract

Fish moving between different thermal environments experience heat exchange via conduction through the body wall and convection from blood flow across the gills. We report a strategy of preventing convective heat loss at the gills during excursions into deep, cold water by the tropical scalloped hammerhead shark (). Adult scalloped hammerhead sharks dive rapidly and repeatedly from warm (~26°C) surface waters to depths exceeding 800 meters with temperatures as low as 5°C. Biologgers attached to adult sharks show that warm muscle temperatures were maintained throughout the deepest portion of each dive. Substantive cooling only occurred during the latter stages of the ascent phase and, once initiated, was rapid. Heat transfer coefficient modeling indicated that convective heat transfer was suspended, probably by suppressing gill function during deep dives. This previously unobserved strategy has broad similarities to marine mammal "breath hold" diving.

摘要

鱼类在不同的热环境之间移动时,会通过体壁传导和血流穿过鳃的对流来进行热交换。我们报告了一种策略,即在热带皱鳃鲨()进入深冷水域时,通过防止鳃部的对流热损失来防止对流热损失。成年皱鳃鲨会从温暖(约 26°C)的表层水域迅速而反复地潜入深度超过 800 米的水域,水温低至 5°C。附着在成年鲨鱼身上的生物记录器显示,在每次潜水的最深部分,温暖的肌肉温度都得到了维持。只有在上升阶段的后期才会发生实质性的冷却,而且一旦开始,冷却速度很快。传热系数建模表明,对流热传递被暂停,可能是通过在深潜时抑制鳃的功能来实现的。这种以前未被观察到的策略与海洋哺乳动物的“憋气潜水”有广泛的相似之处。

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