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Bilateral sectioning of the anterior ethmoidal nerves does not eliminate the diving response in voluntarily diving rats

机译:筛前神经的双侧切片不能消除自愿潜水大鼠的潜水反应

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摘要

The diving response is characterized by bradycardia, apnea, and increased peripheral resistance. This reflex response is initiated by immersing the nose in water. Because the anterior ethmoidal nerve (AEN) innervates the nose, our hypothesis was that intact AENs are essential for initiating the diving response in voluntarily diving rats. Heart rate (HR) and arterial blood pressure (BPa) were monitored using implanted biotransmitters. Sprague-Dawley rats were trained to voluntarily swim 5 m underwater. During diving, HR decreased from 480 ± 15 to 99 ± 5 bpm and BPa increased from 136 ± 2 to 187 ± 3 mmHg. Experimental rats (N = 9) then received bilateral AEN sectioning, while Sham rats (N = 8) did not. During diving in Experimental rats 7 days after AEN surgery, HR decreased from 478 ± 13 to 76 ± 4 bpm and BPa increased from 134 ± 3 to 186 ± 4 mmHg. Responses were similar in Sham rats. Then, during nasal stimulation with ammonia vapors in urethane-anesthetized Experimental rats, HR decreased from 368 ± 7 to 83 ± 4 bpm, and BPa increased from 126 ± 7 to 175 ± 4 mmHg. Responses were similar in Sham rats. Thus, 1 week after being sectioned the AENs are not essential for initiating a full cardiorespiratory response during both voluntary diving and nasal stimulation. We conclude that other nerve(s) innervating the nose are able to provide an afferent signal sufficient to initiate the diving response, although neuronal plasticity within the medullary dorsal horn may be necessary for this to occur.
机译:潜水反应的特征是心动过缓,呼吸暂停和周围阻力增加。通过将鼻子浸入水中来启动这种反射反应。由于前筛窦神经(AEN)支配鼻子,因此我们的假设是,完整的AEN对主动跳水大鼠的跳水反应至关重要。使用植入的生物递质监测心率(HR)和动脉血压(BPa)。训练Sprague-Dawley大鼠自愿在水下5 m游泳。潜水期间,心率从480±15 bpm下降至99±5 bpm,而BPa从136±2 mmHg增加至187±3 mmHg。然后,实验大鼠(N = 9)接受双侧AEN切片,而假手术大鼠(N = 8)则不接受。在AEN手术后7天的实验大鼠中潜水期间,HR从478±13 mmHg降低至76±4 bpm,BPa从134±3 mmHg增加至186±4 mmHg。在Sham大鼠中反应相似。然后,在经氨酯麻醉的实验大鼠鼻内用氨蒸气刺激时,HR从368±7降至83±4 bpm,而BPa从126±7升高至175±4 mmHg。在Sham大鼠中反应相似。因此,切片后1周,AEN对于在自愿潜水和鼻腔刺激过程中开始全面的心肺反应并非必不可少。我们得出的结论是,支配鼻子的其他神经能够提供足以引发潜水反应的传入信号,尽管可能需要在延髓背角内进行神经元可塑性。

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