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牛蛙(Rana pipiens)潜水呼吸暂停的起始过程。

The initiation of diving apnoea in the frog, Rana pipiens.

作者信息

West N H, Jones D R

出版信息

J Exp Biol. 1976 Feb;64(1):25-38. doi: 10.1242/jeb.64.1.25.

Abstract
  1. Diving apnoea in Rana pipiens was initiated by submerging the external nares. As the water level was raised above the frog, both buccal and lung pressure increased by an amount corresponding to the water head. During submergence the external nares remained closed, although the apnoeic period was punctuated by ventilation movements which moved gas between the lungs and buccal cavity. 2. Bilateral section of the ophthalmic nerves did not alter the normal pattern of ventilation in air, although it often resulted in the intake of water into the buccal cavity on submergence. Introduction of water into the buccal cavity, either naturally as in denervates or by injection through a catheter in intact frogs, triggered sustained electromyographical activity in some respiratory muscles. 3. Electroneurograms recorded from the cut peripheral end of an ophthalmic nerve showed that receptors in the external narial region were stimulated by movement of a water meniscus across them. Activity could also be recorded in the ophthalmic nerve in response to water flow past the submerged nares. Punctate stimulation of the narial region confirmed that these receptors were mechanosensitive. 4. Bilateral electrical stimulation of the central ends of cut ophthalmic nerves in lightly anaesthetized frogs caused apnoea with a latency of less than 200 ms. The external nares remained closed throughout the period of stimulation although buccal pressure events, resembling underwater ventilation movements, occurred when stimulation was prolonged.
摘要
  1. 豹蛙的潜水呼吸暂停是通过将外鼻孔浸入水中引发的。当水位升至青蛙上方时,口腔和肺部压力均升高,升高幅度与水头相当。在潜水过程中,外鼻孔一直保持关闭,尽管呼吸暂停期会被肺部与口腔之间气体交换的通气动作打断。2. 双侧切断眼神经不会改变在空气中的正常通气模式,尽管这常常导致在潜水时水进入口腔。无论是像去神经动物那样自然进水,还是通过导管向完整青蛙口腔内注水,都会引发一些呼吸肌持续的肌电图活动。3. 从切断的眼神经外周端记录的神经电图显示,外鼻孔区域的感受器会因水弯月面越过它们而受到刺激。对浸没鼻孔处水流的反应也可在眼神经中记录到神经活动。对鼻孔区域的点状刺激证实这些感受器是机械敏感的。4. 对轻度麻醉的青蛙双侧切断的眼神经中枢端进行电刺激会导致呼吸暂停,潜伏期小于200毫秒。在整个刺激期间,外鼻孔一直保持关闭,不过当刺激延长时,会出现类似水下通气动作的口腔压力变化。

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