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首页> 外文期刊>The Journal of Experimental Biology >Blood oxygen depletion during rest-associated apneas of northern elephant seals (Mirounga angustirostris)
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Blood oxygen depletion during rest-associated apneas of northern elephant seals (Mirounga angustirostris)

机译:北方象海豹(Mirounga angustirostris)休息相关的呼吸暂停期间的血氧消耗

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Blood gases (P(O)2, P(CO)2, pH), oxygen content, hematocrit and hemoglobin concentration were measured during rest-associated apneas of nine juvenile northern elephant seals. In conjunction with blood volume determinations, these data were used to determine total blood oxygen stores, the rate and magnitude of blood O(2) depletion, the contribution of the blood O(2) store to apneic metabolic rate, and the degree of hypoxemia that occurs during these breath-holds. Mean body mass was 66+/-9.7 kg (+/- s.d.); blood volume was 196+/-20 ml kg(-1); and hemoglobin concentration was 23.5+/-1.5 g dl(-1). Rest apneas ranged in duration from 3.1 to 10.9 min. Arterial P(O)2 declined exponentially during apnea, ranging between a maximum of 108 mmHg and a minimum of 18 mmHg after a 9.1 min breath-hold. Venous P(O)2 values were indistinguishable from arterial values after the first minute of apnea; the lowest venous P(O)2 recorded was 15 mmHg after a 7.8 min apnea. O(2) contents were also similar between the arterial and venous systems, declining linearly at rates of 2.3 and 2.0 ml O(2) dl(-1) min(-1), respectively, from mean initial values of 27.2 and 26.0 ml O(2) dl(-1). These blood O(2) depletion rates are approximately twice the reported values during forced submersion and are consistent with maintenance of previously measured high cardiac outputs during rest-associated breath-holds. During a typical 7-min apnea, seals consumed, on average, 56% of the initial blood O(2) store of 52 ml O(2) kg(-1); this contributed 4.2 ml O(2) kg(-1) min(-1) to total body metabolic rate during the breath-hold. Extreme hypoxemic tolerance in these seals was demonstrated by arterial P(O)2 values during late apnea that were less than human thresholds for shallow-water blackout. Despite such low P(O)2s, there was no evidence of significant anaerobic metabolism, as changes in blood pH were minimal and attributable to increased P(CO)2. These findings and the previously reported lack of lactate accumulation during these breath-holds are consistent with the maintenance of aerobic metabolism even at low oxygen tensions during rest-associated apneas. Such hypoxemic tolerance is necessary in order to allow dissociation of O(2) from hemoglobin and provide effective utilization of the blood O(2) store.
机译:在九只北象海豹幼崽的休息相关呼吸暂停期间,测量了血气(P(O)2,P(CO)2,pH),氧含量,血细胞比容和血红蛋白浓度。结合血容量测定,这些数据可用于确定总血氧存储量,血液O(2)消耗的速率和幅度,血液O(2)存储对呼吸暂停代谢率的影响以及低氧血症的程度在这些屏气期间发生。平均体重为66 +/- 9.7 kg(+/- s.d.);血容量为196 +/- 20 ml kg(-1);血红蛋白浓度为23.5 +/- 1.5 g dl(-1)。休息呼吸暂停的持续时间为3.1分钟至10.9分钟。呼吸暂停期间,动脉P(O)2呈指数下降,最大幅度为108 mmHg,最小为18 mmHg。呼吸暂停的第一分钟后,静脉P(O)2值与动脉值没有区别;呼吸暂停7.8分钟后,记录的最低静脉P(O)2为15 mmHg。 O(2)含量在动脉和静脉系统之间也相似,分别以2.3和2.0 ml的速率线性下降O(2)dl(-1)min(-1),分别从平均初始值27.2和26.0 ml O(2)dl(-1)。这些血液O(2)耗竭率大约是强迫潜水期间报告值的两倍,并且与在休息相关的屏息期间维持先前测得的高心输出量保持一致。在典型的7分钟呼吸暂停期间,海豹平均消耗了初始血液O(2)存储的52 ml O(2)kg(-1)的56%;这在屏气期间为全身代谢率贡献了4.2 ml O(2)kg(-1)min(-1)。在这些海豹中的极端低氧耐受性由呼吸暂停后期的动脉P(O)2值证实,该值小于人类对浅水停电的阈值。尽管P(O)2含量很低,但没有证据表明厌氧代谢显着,因为血液pH值的变化很小,可归因于P(CO)2的增加。这些发现以及先前报道的这些屏气期间缺乏乳酸的积累与维持有氧代谢相一致,即使在与休息相关的呼吸暂停期间低氧压下也是如此。为了允许O(2)从血红蛋白解离并提供血液O(2)存储的有效利用,这种低氧耐受性是必要的。

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