Arita H, Kogo N, Koshiya N
Brain Res. 1987 Jan 20;401(2):258-66. doi: 10.1016/0006-8993(87)91410-7.
The activity of respiratory neurons in the caudal part of the nucleus retroambigualis (NRA) was recorded intracellularly in decerebrated, spontaneously breathing cats. Spinal projections of these neurons were determined by antidromic stimulation at the C3 segment. A high concentration of bulbospinal expiratory (BS-E) neurons was identified in the caudal NRA, whereas the inspiratory (I) neurons, not activated antidromically, were also found to be intermingled in the same region. The BS-E neurons had ramp-like depolarizing potentials during expiration, and repolarized rapidly at the onset of phrenic nerve discharge. The I neurons depolarized abruptly in the early I phase, and repolarized gradually thereafter, namely, they were early-I neurons. Intracellular current injections revealed postsynaptic inhibition of the BS-E neurons during inspiration, as evidenced by inhibitory postsynaptic potential reversal. Using the technique of intracellular labeling with horseradish peroxidase, seven well-stained expiratory cells located in the caudal NRA revealed detailed information about axonal morphology: the axon projected rostrally and dorsomedially for the first 2 mm after emerging from the soma, then turned caudally and ventrally along two different courses, and crossed the midline of the medulla almost at the same rostrocaudal level as the soma. No axon collaterals were observed along the length of the stained portion, indicating that the BS-E neurons cannot influence other respiratory neurons in the brainstem. It has been concluded that the NRA expiratory neurons are involved only in spinal action, and that they receive a postsynaptic inhibition during inspiration.(ABSTRACT TRUNCATED AT 250 WORDS)
在去大脑、自主呼吸的猫中,对疑核尾部(NRA)呼吸神经元的活动进行了细胞内记录。通过在C3节段进行逆向刺激来确定这些神经元的脊髓投射。在NRA尾部发现了高浓度的延髓脊髓呼气(BS-E)神经元,而未被逆向激活的吸气(I)神经元也混杂在同一区域。BS-E神经元在呼气时有斜坡状去极化电位,并在膈神经放电开始时迅速复极化。I神经元在吸气早期突然去极化,随后逐渐复极化,即它们是早期吸气神经元。细胞内电流注入显示,吸气时BS-E神经元存在突触后抑制,抑制性突触后电位反转证明了这一点。使用辣根过氧化物酶细胞内标记技术,位于NRA尾部的七个染色良好的呼气细胞揭示了有关轴突形态的详细信息:轴突从胞体发出后,在最初2毫米内向吻侧和背内侧投射,然后沿两条不同路径转向尾侧和腹侧,并几乎在与胞体相同的前后水平穿过延髓中线。在染色部分的长度上未观察到轴突侧支,这表明BS-E神经元不能影响脑干中的其他呼吸神经元。得出的结论是,NRA呼气神经元仅参与脊髓作用,并且在吸气时接受突触后抑制。(摘要截断于250字)