Lehmenkühler A, Nicholson C, Speckmann E J
Institut für Physiologie, Westfälische-Wilhelms-Universität Münster, F.R.G.
Brain Res. 1991 Oct 11;561(2):292-8. doi: 10.1016/0006-8993(91)91607-3.
The tissue volume required to produce a penicillin-induced interictal discharge in the local EEG was estimated. A pair of microelectrodes were lowered into the motor cortex of anaesthetised and artificially ventilated rats. One double-barrelled electrode was used to release tetramethylammonium (TMA+) by iontophoresis or to pressure eject a solution containing penicillin (PEN-) and TMA+ concentration. The extracellular distribution of PEN- was defined using diffusion analysis of the TMA+. From these data the spatial distribution of PEN- was estimated at the times of first interictal spikes in the EEG. The critical mass of active nerve cells was calculated from the threshold concentration of PEN- needed to elicit paroxysmal depolarisation shifts in neocortical slices and found to lie within a tissue sphere with a radius of ca. 150 microns.
估算了在局部脑电图中产生青霉素诱发的发作间期放电所需的组织体积。将一对微电极插入麻醉并人工通气的大鼠的运动皮层。使用一个双管电极通过离子电渗法释放四甲基铵(TMA+),或通过压力喷射含有青霉素(PEN-)和TMA+浓度的溶液。利用TMA+的扩散分析来确定PEN-的细胞外分布。根据这些数据,在脑电图首次出现发作间期棘波时估算PEN-的空间分布。从诱发新皮层切片阵发性去极化偏移所需的PEN-阈值浓度计算出活跃神经细胞的临界质量,发现其位于半径约为150微米的组织球内。