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首页> 外文期刊>The Journal of Experimental Biology >The effect of graded hypoxia on the metabolic rate and buccal activity of a lungless salamander (Desmognathus fuscus)
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The effect of graded hypoxia on the metabolic rate and buccal activity of a lungless salamander (Desmognathus fuscus)

机译:分级缺氧对无肺sal(Desmognathus fuscus)的代谢率和颊活动的影响

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The hypothesis that the lungless salamander Desmognathus fuscus responds actively to hypoxia was tested. Patterns of buccal movements [apneic period duration, the duration (min h(-1)) of buccal pumping and buccal pumping frequency], heart rate and metabolic rate (rates of oxygen uptake and carbon dioxide output) were determined during a control period (21% oxygen), a hypoxic period (2, 5, 6.5, 8 or 10% oxygen) and a recovery period (21% oxygen), Hypoxic salamanders maintained their rate of oxygen uptake at control levels until a critical oxygen level between 10 and 8% oxygen was reached. The rate of carbon dioxide output remained constant across all oxygen levels, except for a significant increase during exposure to 5% oxygen. The buccal activity of lungless salamanders was responsive to environmental hypoxia, with a significant stimulation during exposure to 6.5% and 5% oxygen. Buccal pumping frequency was inhibited at 2% oxygen. Heart rate was stimulated at all hypoxic levels except 2% O-2, During recovery, metabolic rate and heart rate returned to control levels within 20 min in after all hypoxic exposures. The durations of apneic periods increased significantly compared with the hypoxic value during recovery from exposure to 10%, 6.5% and 5% oxygen. Overall, the animals responded actively to hypoxia by increasing the duration of buccal activity as oxygen levels decreased. The ability of these changes to facilitate oxygen uptake is not known. However, the response of the dusky salamander to low levels of oxygen is analogous to the hypoxic ventilatory response observed in lunged vertebrates. [References: 26]
机译:测试了无肺salDesmognathus fuscus对缺氧有积极反应的假说。在控制期间内确定了颊部运动的模式[呼吸周期持续时间,颊部抽气的持续时间(min h(-1)和颊部抽气的频率)],心率和代谢率(氧气吸收率和二氧化碳输出率)。低氧sal(氧气含量为21%),缺氧期(2、5、6.5、8或10%氧气)和恢复期(21%氧气),低氧maintained维持其摄氧率处于控制水平,直到临界氧水平在10至达到8%的氧气。二氧化碳输出速率在所有氧气水平下均保持恒定,但在暴露于5%氧气期间会显着增加。无肺sal的颊部活动对环境缺氧有反应,在暴露于6.5%和5%的氧气时具有明显的刺激作用。含氧量为2%时,颊部抽气频率受到抑制。除2%O-2以外,所有低氧水平的心率均受到刺激。在恢复期间,所有低氧暴露后20分钟内,代谢率和心率均恢复至对照水平。与暴露于10%,6.5%和5%氧气的恢复过程中的低氧值相比,呼吸暂停期的持续时间显着增加。总体而言,随着氧气水平的降低,动物通过增加颊活动的持续时间对缺氧做出积极反应。这些改变促进氧吸收的能力尚不清楚。但是,昏暗的am对低氧的反应类似于在有肺的脊椎动物中观察到的低氧通气反应。 [参考:26]

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