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首页> 外文期刊>The Journal of Experimental Biology >Cardiorespiratory coupling in cetaceans; a physiological strategy to improve gas exchange?
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Cardiorespiratory coupling in cetaceans; a physiological strategy to improve gas exchange?

机译:Cetaceans的心肺耦合; 改善气体交换的生理策略?

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In the current study we used transthoracic echocardiography to measure stroke volume (SV), heart rate (f(H)) and cardiac output (CO) in adult bottlenose dolphins (Tursiops truncatus), a male beluga whale calf [Delphinapterus leucas, body mass (M-b) range: 151-175 kg] and an adult female false killer whale (Pseudorca crassidens, estimated M-b: 500-550 kg) housed in managed care. We also recorded continuous electrocardiogram (ECG) in the beluga whale, bottlenose dolphin, false killer whale, killer whale (Orcinus orca) and pilot whale (Globicephala macrorhynchus) to evaluate cardiorespiratory coupling while breathing spontaneously under voluntary control. The results show that cetaceans have a strong respiratory sinus arrythmia (RSA), during which both f(H) and SV vary within the interbreath interval, making average values dependent on the breathing frequency (f(R)). The RSA-corrected f(H) was lower for all cetaceans compared with that of similarly sized terrestrial mammals breathing continuously. As compared with terrestrial mammals, the RSA-corrected SV and CO were either lower or the same for the dolphin and false killer whale, while both were elevated in the beluga whale. When plotting f(R) against f(H) for an inactive mammal, cetaceans had a greater cardiac response to changes in f(R) as compared with terrestrial mammals. We propose that these data indicate an important coupling between respiration and cardiac function that enhances gas exchange, and that this RSA is important to maximize gas exchange during surface intervals, similar to that reported in the elephant seal.
机译:在目前的研究中,我们使用经术超声心动图测量中风体积(SV),心率(F(H))和成人瓶颈海豚(Tursiops truncatus)的心脏输出(CO),雄性Beluga Whale Calf [Delphinapterus Leucas,体重(MB)范围:151-175千克]和成年女性假杀手鲸(伪科崩溃,估计MB:500-550千克),饲养管理护理。我们还在白鲸鲸鱼,瓶装海豚,假杀手鲸,杀手鲸(Orcinus Orca)和飞行员鲸鱼(Globicephala Macrorhynchus)中录制了连续的心电图(ECG),以评估心肺偶联的同时在自愿控制下自发呼吸。结果表明,鲸须患者具有强呼吸道窦性曲线(RSA),在其中F(H)和SV均在中白间隔内变化,使平均值取决于呼吸频率(F(R))。所有鲸类的RSA校正的F(h)较低,而所有鲸类的患者相比持续呼吸相似尺寸的陆地哺乳动物。与陆地哺乳动物相比,RSA校正的SV和CO对于海豚和假杀手鲸来说是较低的,而且两者都在Beluga Whale中升高。当对F(H)的F(R)绘制无活性哺乳动物时,与陆地哺乳动物相比,鲸类对F(R)的变化具有更大的心脏反应。我们提出这些数据表明增强气体交换的呼吸和心功能之间的重要耦合,并且该RSA是在表面间隔期间最大化气体交换的重要性,类似于大象密封件中报道的气体交换。

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