Jodkowski J S, Guthrie R D, Cameron W E
Department of Pediatrics, University of Pittsburgh, PA.
Brain Res. 1989 Dec 29;505(2):187-94. doi: 10.1016/0006-8993(89)91441-8.
Membrane potential trajectories and discharge characteristics were measured intracellularly in 29 phrenic motoneurons of anesthesized, paralyzed and artificially ventilated cats during hypercapnic respiration and the aspiration reflex. Fifteen 'active' cells discharged spontaneously during inspiration, and the remaining 14 'quiescent' cells exhibited no discharge in spite of strong central respiratory drive. The mean membrane potential of the quiescent cells during inspiration (-62 +/- 4 mV) was significantly lower than the threshold level determined for the active cells -52 +/- 4 mV). The mean axonal conduction velocity was slower for the active (60.4 +/- 8.7 m/s) than quiescent cells (67.4 +/- 6.9 m/s). All phrenic motoneurons discharged during the aspiration reflex with maximum instantaneous frequencies ranging from 6 to 357 Hz. No differences were found for the maximum discharge frequency during the reflex between the active and quiescent cells. Although there were differences in the slopes of the depolarization during inspiration between the groups of cells, no such difference existed in the slopes during the aspiration reflex. The threshold level for the first spike during the reflex was the same as that during inspiration but the level for successive spikes became progressively less negative while spike amplitude decreased and duration increased. Stimulation of the nasopharynx to elicit the aspiration reflex was found to alter the timing of the subsequent respiratory cycles.
在高碳酸血症呼吸和吸气反射过程中,对麻醉、麻痹并进行人工通气的猫的29个膈运动神经元进行细胞内记录,测量其膜电位轨迹和放电特性。15个“活跃”细胞在吸气时自发放电,其余14个“静止”细胞尽管有强烈的中枢呼吸驱动,但未出现放电。静止细胞在吸气时的平均膜电位(-62±4 mV)显著低于活跃细胞的阈值水平(-52±4 mV)。活跃细胞的平均轴突传导速度(60.4±8.7 m/s)比静止细胞(67.4±6.9 m/s)慢。所有膈运动神经元在吸气反射时均放电,最大瞬时频率范围为6至357 Hz。活跃细胞和静止细胞在反射时的最大放电频率没有差异。虽然两组细胞在吸气时去极化的斜率存在差异,但在吸气反射时的斜率没有差异。反射时第一个动作电位的阈值水平与吸气时相同,但后续动作电位的水平逐渐减小,同时动作电位幅度减小,持续时间增加。发现刺激鼻咽引发吸气反射会改变随后呼吸周期的时间。