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首页> 外文期刊>Brain research >Background potassium concentrations and epileptiform discharges. I. Electrophysiological characteristics of neuronal activity.
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Background potassium concentrations and epileptiform discharges. I. Electrophysiological characteristics of neuronal activity.

机译:背景钾浓度和癫痫样放电。 I.神经元活动的电生理特征。

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摘要

Intra- and extracellular recording techniques were used to study the epileptiform activity generated by guinea pig hippocampal slices perfused with free-magnesium artificial cerebrospinal fluid in the presence of physiologic (4 mM), reduced (2 mM) or elevated (8 mM) extracellular potassium concentrations ([K(+)](o)). Extracellular field potentials along with intracellular recordings were recorded in CA1 or CA3 region. Reduction of [K(+)](o) significantly increased the latency of epileptiform field potential (EFP) appearance as well as burst discharge duration and decreased EFP repetition rate. Depending on different background [K(+)](o), epileptiform burst discharges appeared in different patterns including varied types of paroxysmal depolarisation shifts and burst activity in CA1 and CA3 subfields. Comparison with physiological and increased [K(+)](o,) reduction of [K(+)](o) significantly increased the mean duration of bursts, mean amplitude of depolarisation, mean after-hyperpolarisation duration, and inter-spike intervals in both CA1 and CA3 areas. Three distinct patterns were distinguished on the basis of their evoked firing pattern in response to application of depolarising current pulses in the interval of epileptiform burst discharges. Neurons superfused with 2 mM [K(+)](o) presented fast adapting pattern while cells washed with 4 or 8 mM [K(+)](o) exhibited intrinsically bursting or slow adapting patterns. Comparing the groups with different background [K(+)](o), there is a more severe form of discharges in low K(+) and a subtle difference between 4 and 8 mM K(+). The data indicate the importance of background [K(+)](o) on epileptiform burst discharge pattern and characteristics.
机译:细胞内和细胞外记录技术用于研究在生理性(4 mM),降低(2 mM)或升高(8 mM)的细胞外钾存在的情况下,用自由镁人工脑脊液灌注的豚鼠海马切片产生的癫痫样活性浓度([K(+)](o))。在CA1或CA3区域记录细胞外场电位以及细胞内记录。减少[K(+)](o)显着增加了癫痫样场电位(EFP)出现的潜伏期,以及突发放电持续时间和降低的EFP重复率。根据不同的背景[K(+)](o),癫痫样猝发放电以不同的模式出现,包括CA1和CA3子场中阵发性去极化移位和猝发活动的各种类型。与生理比较和[K(+)](o)的增加和[K(+)](o)减少的比较,显着增加了平均猝发持续时间,平均去极化幅度,平均超极化后持续时间和尖峰间隔在CA1和CA3区域。响应于在癫痫样脉冲放电间隔中施加去极化电流脉冲,根据其激发模式来区分三种不同的模式。充满2 mM [K(+)](o)的神经元呈现快速适应模式,而以4或8 mM [K(+)](o)洗涤的细胞则呈现内在爆发或缓慢适应模式。比较具有不同背景[K(+)](o)的组,在低K(+)处存在更严重的放电形式,并且在4和8 mM K(+)之间存在细微差别。数据表明背景[K(+)](o)对癫痫样放电模式和特征的重要性。

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