Jiang C, Lipski J
Department of Physiology, School of Medicine, University of Auckland, New Zealand.
Exp Brain Res. 1990;81(3):639-48. doi: 10.1007/BF02423514.
Axonal projections and synaptic connectivity of expiratory Bötzinger neurons with an augmenting firing pattern (Bot-Aug neurons) to neurons in the ipsilateral ventral respiratory group (VRG) were studied in anaesthetized cats. Antidromic mapping revealed extensive axonal arborizations of Bot-Aug neurons (24 of 45) to the rostral or caudal VRG, with some having arbors in both regions. Of 234 pairs of neurons studied with intracellular recording and spike-triggered averaging, monosynaptic inhibitory postsynaptic potentials (IPSPs) were evoked in 49/221 VRG neurons by 38/98 Bot-Aug neurons. The highest incidence of monosynaptic inhibition was found in inspiratory bulbospinal neurons (10 of 23 tested). Evidence was also found for monosynaptic inhibition, by a separate group of Bot-Aug neurons, of expiratory bulbospinal neurons (12/58), while excitatory postsynaptic potentials (EPSPs) were identified in another two of these neurons. In addition, monosynaptic IPSPs were recorded from 13 of 53 identified laryngeal motoneurons, and from 14 of 100 respiratory propriobulbar neurons. Presumptive disynaptic IPSPs were recorded from 11 of the 221 VRG neurons. We conclude that Bot-Aug neurons exert widespread inhibition on all major neuron categories in the ipsilateral VRG, and should be regarded as an important element in shaping the spatiotemporal output pattern of both respiratory motoneurons and premotor neurons.
在麻醉猫中研究了具有增强放电模式的呼气博茨inger神经元(Bot-Aug神经元)向同侧腹侧呼吸组(VRG)神经元的轴突投射和突触连接。逆向映射显示,Bot-Aug神经元(45个中的24个)向吻侧或尾侧VRG有广泛的轴突分支,有些在两个区域都有分支。在用细胞内记录和触发平均技术研究的234对神经元中,38/98个Bot-Aug神经元在49/221个VRG神经元中诱发了单突触抑制性突触后电位(IPSP)。在吸气性延髓脊髓神经元中发现单突触抑制的发生率最高(23个测试中有10个)。还发现另一组Bot-Aug神经元对呼气性延髓脊髓神经元有单突触抑制的证据(12/58),而在其中另外两个神经元中鉴定出兴奋性突触后电位(EPSP)。此外,在53个已鉴定的喉运动神经元中的13个以及100个呼吸性脑桥固有神经元中的14个记录到了单突触IPSP。在221个VRG神经元中的11个记录到了推测的双突触IPSP。我们得出结论,Bot-Aug神经元对同侧VRG中的所有主要神经元类别施加广泛抑制,应被视为塑造呼吸运动神经元和运动前神经元时空输出模式的重要因素。