Overton P G, Greenfield S A
University Department of Pharmacology, Oxford, United Kingdom.
J Neural Transm Park Dis Dement Sect. 1995;10(1):41-54. doi: 10.1007/BF02256628.
To ascertain the extent to which neuronal firing pattern in the subthalamic nucleus (STN) is determined by afferent inputs, a comparison was made between STN neurons recorded in vivo and in vitro (a largely denervated preparation). In vivo, the majority of cells exhibited an irregular firing pattern, although some showed evidence of burst firing. In contrast, all cells had a regular firing pattern in vitro. Electrical stimulation of the striatopallidal complex in vivo induced a short latency inhibition in STN neurons, followed by a burst of spikes. These effects could be reproduced in vitro; hyperpolarising pulses gave rist to a slow depolarising potential upon termination, which was accompanied by a burst of action potentials. Hence, the evidence suggests that afferents play an important role in determining the firing pattern of STN neurons. However, the cells also possess intrinsic membrane properties which allow inputs to trigger either single spikes or bursts.
为了确定丘脑底核(STN)中的神经元放电模式在多大程度上由传入输入决定,对在体和体外记录的STN神经元(一种大部分去神经支配的标本)进行了比较。在体时,大多数细胞表现出不规则放电模式,尽管有些细胞显示出爆发式放电的迹象。相比之下,所有细胞在体外都具有规则的放电模式。在体时对纹状体苍白球复合体进行电刺激会在STN神经元中诱导出短潜伏期抑制,随后是一阵尖峰。这些效应在体外也能重现;超极化脉冲终止时会产生缓慢的去极化电位,同时伴有一阵动作电位。因此,证据表明传入输入在决定STN神经元的放电模式中起重要作用。然而,这些细胞也具有内在膜特性,使输入能够触发单个尖峰或爆发式放电。