Dutschmann Mathias, Paton Julian F R
Department of Animal Physiology, University of Tübingen, Auf der Morgenstelle 28, 72076 Tübingen, Germany.
Am J Physiol Regul Integr Comp Physiol. 2002 Apr;282(4):R999-R1005. doi: 10.1152/ajpregu.00502.2001.
In an unanesthetized decerebrate in situ arterially perfused brain stem preparation of mature rat, strychnine (0.05-0.2 microM) blockade of glycine receptors caused postinspiratory glottal constriction to occur earlier, shifting from early expiration to inspiration. This resulted in a paradoxical inspiratory-related narrowing of the upper airway. Stimulation of the trigeminal ethmoidal nerve (EN5; 20 Hz, 100 micros, 0.5-2 V) evoked a diving response, which included a reflex apnea, glottal constriction, and bradycardia. After strychnine administration, this pattern was converted to a maintained phrenic nerve discharge and a reduced glottal constriction that was interrupted intermittently by transient abductions. The onset of firing of postinspiratory neurons shifted from early expiration into neural inspiration in the presence of strychnine, but neurons maintained their tonic activation during EN5 stimulation, as observed during control. Inspiratory neurons that were hyperpolarized by EN5 stimulation in control conditions were powerfully excited after loss of glycinergic inhibition. Thus the integrity of glycinergic inhibition within the pontomedullary respiratory network is critical for the coordination of cranial and spinal motor outflows during eupnea but also for protective reflex regulation of the upper airway.
在成熟大鼠未麻醉的去大脑原位动脉灌注脑干标本中,士的宁(0.05 - 0.2微摩尔)对甘氨酸受体的阻断使吸气后声门收缩提前出现,从呼气早期转变为吸气期。这导致上呼吸道出现与吸气相关的反常变窄。刺激三叉神经筛骨神经(EN5;20赫兹,100微秒,0.5 - 2伏)引发潜水反应,包括反射性呼吸暂停、声门收缩和心动过缓。给予士的宁后,这种模式转变为膈神经放电持续存在且声门收缩减弱,并被短暂的外展间歇性打断。在士的宁存在的情况下,吸气后神经元的放电起始从呼气早期转变为神经吸气期,但在EN5刺激期间,神经元保持其紧张性激活,这与对照期间观察到的情况相同。在对照条件下被EN5刺激超极化的吸气神经元在失去甘氨酸能抑制后被强烈兴奋。因此,脑桥延髓呼吸网络内甘氨酸能抑制的完整性对于平静呼吸期间颅神经和脊髓运动输出的协调至关重要,对于上呼吸道的保护性反射调节也至关重要。