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白足鼠(白足鼠属)深度低温雏鸟对大气中氧气的呼吸暂停摄取:循环与肺部

Apneic uptake of atmospheric O by deeply hypothermic nestlings of the white-footed mouse (Peromyscus leucopus): circulation and lungs.

作者信息

Hill Richard W, Manteuffel Jacob J, White Bradley A

机构信息

Department of Integrative Biology, Michigan State University, East Lansing, MI, 48824, USA.

Emergency Medicine, Henry Ford Hospital, 2799 West Grand Blvd, Detroit, MI, 48202, USA.

出版信息

J Comp Physiol B. 2025 Feb;195(1):123-139. doi: 10.1007/s00360-024-01585-x. Epub 2024 Oct 8.

Abstract

Nestling white-footed mice (Peromyscus leucopus) are born in the earliest days of spring in cold climates. If the nestlings are by accident exposed to ambient temperatures near freezing (0-7 °C) at early ages (2-10 days old), they may experience body temperatures (Ts) equally low. During such hypothermia, although their heart keeps beating, they become apneic (cease inhaling and exhaling). However, they have an exceptional ability (e.g., compared to Mus musculus) to tolerate these conditions for at least several hours, after which they revive if rewarmed by parents. This paper addresses the physiology of the apneic period. We show that apneic, hypothermic nestlings undergo physiologically important exchanges of gases with the atmosphere. These gas exchanges do not occur across the skin. Instead they occur via the trachea and lungs even though the animals are apneic. Most significantly, when hypothermic neonates are in apnea in ordinary air, they take up O steadily from the atmosphere throughout the apneic period, and the evidence available indicates that this O uptake is essential for the nestlings' survival. At Ts of 2-7 °C, the nestlings' rate of O consumption varies quasi-exponentially with T and averages 0.04 mL O g h, closely similar to the rate expressed by adult mammalian hibernators in hibernation at similar Ts. Morphometric analysis indicates that, at all focal ages, O transport along the full length of the trachea can take place by diffusion at rates adequate to meet the measured rates of metabolic O consumption.

摘要

刚孵化的白足鼠(白足鼠属)在寒冷气候下于早春出生。如果幼鼠在早期(2 - 10日龄)意外暴露于接近冰点(0 - 7°C)的环境温度下,它们的体温(Ts)可能会同样降低。在这种体温过低的情况下,尽管它们的心脏仍在跳动,但会停止呼吸(停止吸气和呼气)。然而,它们具有非凡的能力(例如,与小家鼠相比),能够在这些条件下耐受至少几个小时,之后如果被父母温暖过来就会苏醒。本文探讨了呼吸暂停期的生理学。我们发现,呼吸暂停、体温过低的幼鼠与大气进行着生理上重要的气体交换。这些气体交换不是通过皮肤进行的。相反,即使动物处于呼吸暂停状态,它们也通过气管和肺部进行气体交换。最重要的是,当体温过低的新生儿在普通空气中处于呼吸暂停状态时,它们在整个呼吸暂停期持续从大气中稳定地摄取氧气,现有证据表明这种氧气摄取对幼鼠的生存至关重要。在2 - 7°C的体温下,幼鼠的氧气消耗率随温度呈准指数变化,平均为0.04 mL O g h,与成年哺乳动物冬眠者在类似体温下冬眠时的消耗率非常相似。形态学分析表明,在所有关键年龄阶段,沿着气管全长的氧气运输可以通过扩散以足以满足所测代谢氧气消耗率的速率进行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52ba/11839856/49317fa25f2f/360_2024_1585_Fig1_HTML.jpg

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