Heinemann U, Lux H D
Brain Res. 1977 Jan 21;120(2):231-49. doi: 10.1016/0006-8993(77)90903-9.
Levels of extracellular potassium activity (aK) during repetitive electrical stimulation were measured with ion sensitive microelectrodes in the somatosensory cortex of the cat to determine maximum values ("ceiling" levels) under different experimental conditions. The maximal values of aK were 10.2 mequiv./1 during stimulation of the cortical surface (CS) or of the nucleus ventroposterolateralis thalami (VPL) and during selfsustained afterdischarges (SAD). Similarly, peak values were 6.5 mequiv./1 for the nucleus ventrolateralis anterior and 4 mequiv./1 for the nucleus centromedianus as well as for the nucleus cuneatus. The rise in aK during a test stimulus with constant intensity and frequency was inversely related to the level of aK produced by a preceding stimulation. Also rise in aK during SAD was smaller when it started from an enhanced level of aK. During repetitive stimulation of CS or VPL a rise in aK was not observed when aK was increased to levels above 10 mequiv./1 by superfusion with potassium enriched solutions. An electrophoretically evoked K+ test signal was reduced between 10 and 48% when applied during stimulus induced increased levels of aK. Stimulus induced potassium changes could become negative when aK was increased to levels above 7 mequiv./1 by local electrophoresis, while the stimulus induced increase in neuronal discharge rate did not disappear or reverse. Amplitudes of ECoG and local evoked potentials were reduced as aK increased during stimulation or superfusion. It is suggested that the ceiling in its steady state is maintained by an active K+ uptake mechanism which balances extra releases of K+. Decreased release of K+ at increased levels of aK may in addition limit the rise in aK.
在猫的体感皮层中,使用离子敏感微电极测量重复电刺激期间的细胞外钾活性(aK)水平,以确定不同实验条件下的最大值(“上限”水平)。在刺激皮层表面(CS)或丘脑腹后外侧核(VPL)以及自发放电后放电(SAD)期间,aK的最大值为10.2 mequiv./1。同样,腹外侧前核的峰值为6.5 mequiv./1,中央中核以及楔束核的峰值为4 mequiv./1。在强度和频率恒定的测试刺激期间,aK的升高与先前刺激产生的aK水平呈负相关。当SAD从升高的aK水平开始时,其期间aK的升高也较小。在通过富含钾的溶液灌流使aK升高至10 mequiv./1以上的水平时,在重复刺激CS或VPL期间未观察到aK升高。当在刺激诱导的aK升高水平期间施加时,电泳诱发的K +测试信号降低了10%至48%。当通过局部电泳使aK升高至7 mequiv./1以上的水平时,刺激诱导的钾变化可能变为负值,而刺激诱导的神经元放电速率增加并未消失或逆转。在刺激或灌流期间,随着aK升高,脑电图(ECoG)和局部诱发电位的幅度降低。有人提出,上限在其稳态下由一种活跃的K +摄取机制维持,该机制平衡了K +的额外释放。在aK升高的水平下K +释放减少可能还会限制aK的升高。