Tatarnikov V S, Shirolapov I V, Glazkova E N, Pyatin V F
Department of Physiology Samara State Medical University, Ministry of Health of the Russian Federation, Samara, Russia.
Bull Exp Biol Med. 2018 Jun;165(2):184-188. doi: 10.1007/s10517-018-4126-6. Epub 2018 Jun 19.
Inhibitory afferent inputs to pontine A5 noradrenergic neurons (A5 NN) are not known, except partial baroreceptor input. In spontaneously breathing pentobarbital-anesthetized rats, we registered 35 A5 NN that were activated by hypoxia (100% N, 10 sec) by more than 5 times in comparison with the background. Cooling of retrotrapezoid nucleus (15°C, 6 sec) completely blocked the motor inspiratory output and A5 NN discharge frequency increased (23/23) by more than 7 times in comparison with the background values. The beginning of A5 NN activation coincided with cessation of inspiratory activity. Short-term passive stretching of the shin muscles (1 sec, 100 g) caused BP drop and complete inhibition of A5 NN (12/12) activated by hypoxia. Inhibitory afferent inputs from proprioceptors and central inspiratory neurons that can limit A5 NN activity were demonstrated.
除了部分压力感受器输入外,桥脑A5去甲肾上腺素能神经元(A5 NN)的抑制性传入输入尚不清楚。在自主呼吸的戊巴比妥麻醉大鼠中,我们记录了35个A5 NN,这些神经元在低氧(100%氮气,10秒)刺激下比背景活动激活超过5倍。延髓后外侧网状核冷却(15°C,6秒)完全阻断了吸气运动输出,并且A5 NN放电频率比背景值增加了7倍以上(23/23)。A5 NN激活的开始与吸气活动的停止同时发生。小腿肌肉的短期被动拉伸(1秒,100克)导致血压下降,并完全抑制了由低氧激活的A5 NN(12/12)。证明了来自本体感受器和中枢吸气神经元的抑制性传入输入可以限制A5 NN的活动。