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猫脑桥延髓网状爆发神经元与展神经运动神经元之间的直接抑制性突触联系。

Direct inhibitory synaptic linkage of pontomedullary reticular burst neurons with abducens motoneurons in the cat.

作者信息

Hikosaka O, Igusa Y, Nakao S, Shimazu H

出版信息

Exp Brain Res. 1978 Nov 15;33(3-4):337-52. doi: 10.1007/BF00235558.

Abstract
  1. Unit spikes of burst neurons were extracellularly recorded in the pontomedullary reticular formation of the cat. These neurons were identified by their burst activity coincident with the quick inhibitory phase of the contralateral abducens nerve during vestibular nystagmus and their antidromic activation from the contralateral abducens nucleus. 2. When the extracellular field potentials in and near the abducens nucleus were triggered by spikes of a contralateral burs neuron, the averaged potential consisted of an early di- or triphasic spike and a late slow positive wave. The early spike was an action current caused by impulses conducting along the axon of the burst neuron. 3. The action potentials of a contralateral burst neuron. 3. The action potentials of a contralateral burst neuron were employed to trigger a post-spike average of the membrane potential of abducens motoneurons. Then unitary IPSPs with monosynaptic latencies were revealed. This provided direct evidence that the burst neurons are inhibitory in nature. The amplitudes of unitary IPSPs ranged from 18 to 220 mu V. Each inhibitory burst neuron branched widely in the abducens nucleus and was estimated to make inhibitory connections with approximately 60% of the motoneuron pool. 4. The post-spike average of compound potentials of the abducens nerve triggered by action potentials of contralateral single inhibitory burst neurons revealed inhibition of spike activity with latencies and time courses compatible with those of unitary IPSPs in motoneurons. The inhibition was observed with all inhibitory burst neurons tested.
摘要
  1. 在猫的脑桥延髓网状结构中,细胞外记录到爆发神经元的单位放电。这些神经元通过在前庭性眼球震颤时与对侧展神经快速抑制期同时出现的爆发活动以及来自对侧展神经核的逆向激活来识别。2. 当对侧爆发神经元的放电触发展神经核及其附近的细胞外场电位时,平均电位由一个早期的双相或三相尖峰和一个晚期的缓慢正波组成。早期尖峰是由爆发神经元轴突传导的冲动引起的动作电流。3. 利用对侧爆发神经元的动作电位触发展神经运动神经元膜电位的峰后平均值。然后揭示了具有单突触潜伏期的单位抑制性突触后电位(IPSP)。这提供了直接证据,表明爆发神经元本质上是抑制性的。单位IPSP的幅度范围为18至220微伏。每个抑制性爆发神经元在展神经核中广泛分支,估计与约60%的运动神经元池形成抑制性连接。4. 由对侧单个抑制性爆发神经元的动作电位触发的展神经复合电位的峰后平均值显示,尖峰活动受到抑制,其潜伏期和时间进程与运动神经元中的单位IPSP一致。在所测试的所有抑制性爆发神经元中均观察到了这种抑制作用。

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