Stringer J L, Lothman E W
University of Virginia, Department of Neurology, Charlottesville 22908.
Neuroscience. 1992;46(2):309-14. doi: 10.1016/0306-4522(92)90053-5.
Recently, a phenomenon has been described in the dentate gyrus termed maximal dentate activation, which is defined by the appearance of bursts of large amplitude population spikes associated with a negative shift of the d.c. potential and a secondary rise of the extracellular potassium level. Previous work has linked maximal dentate activation to kindling of afterdischarges, either when they are elicited in the hippocampus or outside of the hippocampus in the amygdala. Recording bilaterally in the dentate gyrus, it was found that maximal dentate activation occurred on both sides, with the side ipsilateral to the stimulus (either CA3 or angular bundle) being activated first. An afterdischarge did not appear unless bilateral maximal dentate activation had occurred. With repeated stimulation, the time to onset of maximal dentate activation on the two sides of the brain became nearly equal. This was associated with the appearance of afterdischarges. However, complete synchronization of the onset of maximal dentate activation was not necessary for afterdischarge production. Maximal dentate activation and afterdischarges could be readily elicited in rats in which the hippocampal commissures had been cut. It appears that, in the intact brain, the lack of maximal dentate activation on one side of the brain can function as a "brake" for epileptic activity, preventing afterdischarges. Once this brake is removed, by cutting the hippocampal commissures or by initiating maximal dentate activation, the dentate gyrus readily expresses afterdischarges.
最近,在齿状回中描述了一种现象,称为最大齿状激活,其定义为与直流电位的负向偏移和细胞外钾水平的二次升高相关的大幅群体尖峰爆发的出现。先前的研究工作已将最大齿状激活与后放电的点燃联系起来,无论是在海马体中引发还是在杏仁核的海马体外引发。在齿状回双侧进行记录时,发现最大齿状激活在两侧均会发生,刺激同侧(CA3或角束)的一侧首先被激活。除非双侧都发生了最大齿状激活,否则不会出现后放电。随着重复刺激,大脑两侧最大齿状激活开始的时间变得几乎相等。这与后放电的出现有关。然而,最大齿状激活开始的完全同步对于后放电的产生并非必要。在切断海马连合的大鼠中,很容易引发最大齿状激活和后放电。似乎在完整的大脑中,大脑一侧缺乏最大齿状激活可作为癫痫活动的“刹车”,防止后放电。一旦通过切断海马连合或引发最大齿状激活去除了这个刹车,齿状回就很容易出现后放电。