Leiva J
Departamento de Ciencias Preclinicas, Facultad de Medicina, Universidad de Chile, Santiago.
Arch Ital Biol. 1992 Jul;130(3):191-201.
The electrical activity of single units located in the parvicellular part of the red nucleus (pRP) was recorded extracellularly in nitrous oxide anesthetized and C1-transected adult cats. In this area, neurons were found to respond to electrical stimulation applied to intermediate and deep layers of the right superior colliculus (SC). Forty neurons located in the pRN of both sides were studied. Three neurons out of 18 (16.6%) located in the contralateral pRN and six neurons out of 22 (27.3%) located in the ipsilateral pRN were driven by the right SC stimulation. The pRN neurons were separated into four groups according to the latency response to the SC stimulation: 1) 0.6-1.9 ms, 2) 2-4 ms, 3) 4-6 ms, 4) variable latency responses. Each of these four groups of neurons showed a particular pattern of discharge, even though their discharge frequency showed a strong consistency. Four pRN neurons, which responded to SC stimulation, showed a significant correlation with spontaneous horizontal eye movements of saccadic type. It is known that the SC represents one of the main outputs of the striato-nigral motor system. The relation between the SC and the pRN described in the present study suggest that connections exist between the cortico-rubral and the striato-nigral systems, since both have the SC as a common output structure. It is likely, therefore, that the cortico-rubral-SC system is involved in the control of oculomotor functions, and that the SC may serve to establish interactions between systems concerned with eye movements.
在一氧化二氮麻醉且C1横断的成年猫中,对位于红核小细胞部(pRP)的单个神经元的电活动进行了细胞外记录。在该区域,发现神经元对施加于右侧上丘(SC)中间层和深层的电刺激有反应。对两侧pRN中的40个神经元进行了研究。位于对侧pRN的18个神经元中有3个(16.6%),位于同侧pRN的22个神经元中有6个(27.3%)由右侧SC刺激驱动。根据对SC刺激的潜伏期反应,pRN神经元被分为四组:1)0.6 - 1.9毫秒,2)2 - 4毫秒,3)4 - 6毫秒,4)潜伏期反应可变。这四组神经元中的每一组都表现出特定的放电模式,尽管它们的放电频率表现出很强的一致性。四个对SC刺激有反应的pRN神经元与扫视型的自发水平眼动有显著相关性。已知SC是纹状体 - 黑质运动系统的主要输出之一。本研究中描述的SC与pRN之间的关系表明,皮质 - 红核系统和纹状体 - 黑质系统之间存在联系,因为两者都以SC作为共同的输出结构。因此,皮质 - 红核 - SC系统可能参与眼球运动功能的控制,并且SC可能有助于在与眼动相关的系统之间建立相互作用。