Yaari Y, Konnerth A, Heinemann U
Exp Brain Res. 1983;51(1):153-6. doi: 10.1007/BF00236813.
Lowering extracellular [Ca2+] in rat hippocampal slices induces spontaneous epileptiform activity in area CA1, which is characterized by rhythmic burst firing of CA1 neurons and by prolonged negative potential shifts at the pyramidal cell body layer. This activity is accompanied by transient decreases of [Na+] and increases of [K+] in the extracellular space. In spite of the complete blockade of synaptic transmission, the wave of epileptiform activity propagates across area CA1. These findings suggest, that non-synaptic mechanisms may play a role in the generation and spread of epileptiform activity in the mammalian CNS.
降低大鼠海马切片细胞外[Ca2+]浓度会在CA1区诱发自发性癫痫样活动,其特征为CA1神经元的节律性爆发式放电以及锥体细胞层的负电位长时间偏移。这种活动伴随着细胞外空间中[Na+]的短暂降低和[K+]的升高。尽管突触传递被完全阻断,但癫痫样活动波仍会在CA1区传播。这些发现表明,非突触机制可能在哺乳动物中枢神经系统癫痫样活动的产生和传播中发挥作用。