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体外培养的大鼠新皮层神经元中的兴奋性突触后电位。I. 两种不同兴奋性突触后电位的电生理证据。

EPSPs in rat neocortical neurons in vitro. I. Electrophysiological evidence for two distinct EPSPs.

作者信息

Sutor B, Hablitz J J

机构信息

Department of Neurology, Baylor College of Medicine, Houston, Texas 77030.

出版信息

J Neurophysiol. 1989 Mar;61(3):607-20. doi: 10.1152/jn.1989.61.3.607.

DOI:10.1152/jn.1989.61.3.607
PMID:2709103
Abstract
  1. To investigate excitatory postsynaptic potentials (EPSPs), intracellular recordings were performed in layer II/III neurons of the rat medial frontal cortex. The average resting membrane potential of the neurons was more than -75 mV and their average input resistance was greater than 20 M omega. The amplitudes of the action potentials evoked by injection of depolarizing current pulses were greater than 100 mV. The electrophysiological properties of the neurons recorded were similar to those of regular-spiking pyramidal cells. 2. Current-voltage relationships, determined by injecting inward and outward current pulses, displayed considerable inward rectification in both the depolarizing and hyperpolarizing directions. The steady-state input resistance increased with depolarization and decreased with hyperpolarization, concomitant with increases and decreases, respectively, in the membrane time constant. 3. Postsynaptic potentials were evoked by electrical stimulation via a bipolar electrode positioned in layer IV of the neocortex. Stimulus-response relationships, determined by gradually increasing the stimulus intensity, were consistent among the population of neurons examined. A short-latency EPSP [early EPSP (eEPSP)] was the response with the lowest threshold. Amplitudes of the eEPSP ranged from 4 to 8 mV. Following a hyperpolarization of the membrane potential, the amplitude of the eEPSP decreased. Upon depolarization, a slight increase in amplitude and duration was observed, accompanied by a significant increase in time to peak. 4. The membrane current underlying the eEPSP (eEPSC) was measured using the single-electrode voltage-clamp method. The amplitude of the eEPSC was apparently independent of the membrane potential in 8 of 12 neurons tested. In the other 4 neurons, the amplitude of the eEPSC increased with hyperpolarization and decreased with depolarization. 5. Higher stimulus intensities evoked, in addition to the eEPSP, a delayed EPSP [late EPSP (lEPSP)] in greater than 90% of the neurons tested. The amplitude of the lEPSP ranged from 12 to 20 mV, and the latency varied between 20 and 60 ms. The amplitude of the lEPSP varied with membrane potential, decreasing with depolarization and increasing following hyperpolarization. The membrane current underlying the lEPSP (lEPSC) displayed a similar voltage dependence. 6. At stimulus intensities that led to the activation of inhibitory postsynaptic potentials (IPSPs), the lEPSP was no longer observed.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 为研究兴奋性突触后电位(EPSP),在大鼠内侧额叶皮质II/III层神经元中进行了细胞内记录。神经元的平均静息膜电位超过 -75 mV,其平均输入电阻大于20 MΩ。通过注入去极化电流脉冲诱发的动作电位幅度大于100 mV。所记录神经元的电生理特性与规则发放的锥体细胞相似。2. 通过注入内向和外向电流脉冲确定的电流 - 电压关系在去极化和超极化方向均显示出明显的内向整流。稳态输入电阻随去极化增加,随超极化降低,分别伴随着膜时间常数的增加和减少。3. 通过位于新皮质IV层的双极电极进行电刺激诱发突触后电位。通过逐渐增加刺激强度确定的刺激 - 反应关系在所检查的神经元群体中是一致的。短潜伏期EPSP [早期EPSP(eEPSP)]是阈值最低的反应。eEPSP的幅度范围为4至8 mV。在膜电位超极化后,eEPSP的幅度降低。去极化时,观察到幅度和持续时间略有增加,同时峰值时间显著增加。4. 使用单电极电压钳法测量eEPSP(eEPSC)背后的膜电流。在测试的12个神经元中的8个中,eEPSC的幅度显然与膜电位无关。在其他4个神经元中,eEPSC的幅度随超极化增加,随去极化降低。5. 除了eEPSP之外,更高的刺激强度在超过90%的测试神经元中诱发了延迟的EPSP [晚期EPSP(lEPSP)]。lEPSP的幅度范围为12至20 mV,潜伏期在20至60 ms之间变化。lEPSP的幅度随膜电位变化,随去极化降低,超极化后增加。lEPSP(lEPSC)背后的膜电流表现出类似的电压依赖性。6. 在导致抑制性突触后电位(IPSP)激活的刺激强度下,不再观察到lEPSP。(摘要截短于400字)

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