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首页> 外文期刊>Journal of Comparative Physiology A: Neuroethology, Sensory, Neural, and Behavioral Physiology >The role of the vagus nerve in the generation of cardiorespiratory interactions in a neotropical fish, the pacu, Piaractus mesopotamicus
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The role of the vagus nerve in the generation of cardiorespiratory interactions in a neotropical fish, the pacu, Piaractus mesopotamicus

机译:迷走神经在新热带鱼,pacu,Piaractus mesopotamicus的心肺互动产生中的作用

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摘要

The role of the vagus nerve in determining heart rate (f H) and cardiorespiratory interactions was investigated in a neotropical fish, Piaractus mesopotamicus. During progressive hypoxia f H initially increased, establishing a 1:1 ratio with ventilation rate (f R). Subsequently there was a hypoxic bradycardia. Injection of atropine abolished a normoxic inhibitory tonus on the heart and the f H adjustments during progressive hypoxia, confirming that they are imposed by efferent parasympathetic inputs via the vagus nerve. Efferent activity recorded from the cardiac vagus in lightly anesthetized normoxic fish included occasional bursts of activity related to spontaneous changes in ventilation amplitude, which increased the cardiac interval. Restricting the flow of aerated water irrigating the gills resulted in increased respiratory effort and bursts of respiration-related activity in the cardiac vagus that seemed to cause f H to couple with f R. Cell bodies of cardiac vagal pre-ganglionic neurons were located in two distinct groups within the dorsal vagal motor column having an overlapping distribution with respiratory motor-neurons. A small proportion of cardiac vagal pre-ganglionic neurons (2%) was in scattered positions in the ventrolateral medulla. This division of cardiac vagal pre-ganglionic neurons into distinct motor groups may relate to their functional roles in determining cardiorespiratory interactions.
机译:迷走神经在确定心律(f H )和心肺系统相互作用中的作用进行了调查,在新热带鱼,Piaractus mesopotamicus。在进行性缺氧过程中,f H 最初增加,与通气速率(f R )建立了1:1的比率。随后出现了低氧性心动过缓。阿托品的注射消除了心脏上的常氧抑制性紧张和进行性缺氧时的f H 调节,证实了它们是由迷走神经传出的副交感神经所引起的。在轻度麻醉的常氧鱼类中,迷走神经记录的传出活动包括与通气量的自然变化有关的偶发活动,这增加了心脏间隔。限制a灌水的流量导致心脏迷走神经呼吸增加,呼吸相关活动突然爆发,似乎导致f H 与f R 耦合。 。心脏迷走神经节前神经元的细胞体位于背迷走神经运动柱内的两个不同的组中,与呼吸运动神经元的分布重叠。小部分的心脏迷走神经节前神经元(2%)位于腹外侧延髓的分散位置。心脏迷走神经节前神经元分成不同的运动组可能与它们在确定心肺相互作用中的功能有关。

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