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Properties of rat medial septal neurones recorded in vitro.

机译:体外记录大鼠中间隔神经元的特性。

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摘要

Activity of neurones of the rat medial septal nucleus (m.s.) was recorded in in vitro slice preparations. The recorded population could be divided into low (less than 30 M omega)- and high-input-resistance (greater than 30 M omega) neurones. The high-resistance neurones tended to fire spontaneous action potentials and post-synaptic potentials. Some of the spontaneously active cells fired rhythmically at rates of 2-10 Hz. The rhythmicity disappeared following hyperpolarization of the recorded cell. The cells could fire repetitive Ca2+ spikes in the presence of tetrodotoxin (TTX) and intracellular Cs+. Cd2+ blocked this rhythmicity. Most of the m.s. cells had a non-linear voltage-current relation in both the hyperpolarizing and depolarizing directions. Hyperpolarizing rectification was selectively blocked by extracellular Cs+ whereas depolarizing rectification could be blocked by TTX. A recovery from hyperpolarization was associated in many cells with a transient depolarization (anodal break (a.b.) potential). A 20 ms 15 mV hyperpolarization could trigger an a.b. potential. The a.b. potential was reduced by TTX and Cs+ but not by Cd2+ or Mn2+. Depolarization of quiescent neurones triggered action potential discharges. A common pattern of discharge was a burst of two spikes which kept a fairly constant interspike interval. The second spike in a doublet could not follow a rate of 10 Hz depolarizing current pulses. It was also sensitive to topical application of Cd2+. It is therefore suggested that Ca2+ might be involved in the generation of the doublet. Long depolarizing current pulses produced trains of action potentials, showing little accommodation and little after-hyperpolarization, indicating that these cells possess little Ca2+-dependent K+ current. Many cells emitted spontaneous post-synaptic potentials at high rates. These could be blocked by picrotoxin. Stimulation of the lateral septal (l.s.) nucleus produced a Cl-dependent i.p.s.p. The i.p.s.p. was blocked by picrotoxin. Topical application of gamma-aminobutyric acid (GABA) produced a marked Cl(-)-dependent increase in conductance. It is suggested that l.s. projects a GABA-mediated inhibitory connexion to the m.s. Acetylcholine (ACh) depolarized m.s. neurones and caused an increase in input resistance. The response was present in TTX or Cd2+-containing medium. Atropine blocked responses to ACh. 5-Hydroxytryptamine (5-HT) hyperpolarized m.s. neurones in a manner consistent with an increase in K+ conductance. The effects of 5-HT were seen in TTX- and Cd2+-treated m.s. slices.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:在体外切片制剂中记录了大鼠中隔核的神经元活性。记录的种群可分为低(小于30 MΩ)和高输入电阻(大于30 MΩ)神经元。高阻神经元倾向于激发自发动作电位和突触后电位。一些自发活跃的细胞有节奏地以2-10 Hz的频率发射。记录的细胞超极化后,节律消失。在存在河豚毒素(TTX)和细胞内Cs +的情况下,细胞可能会激发重复的Ca2 +尖峰。 Cd2 +阻止了这种节奏。大多数女士电池在超极化和去极化方向上都具有非线性电压-电流关系。超极化整流被细胞外Cs +选择性阻滞,而去极化整流可被TTX阻滞。在许多细胞中,超极化的恢复与短暂的去极化(阳极断裂(a.b.)电位)有关。 20 ms 15 mV超极化可能会触发a.b.潜在。 a.b. TTX和Cs +降低了电位,但Cd2 +或Mn2 +没有降低电位。静态神经元的去极化触发动作电位放电。放电的常见模式是两个尖峰的爆发,使尖峰间的间隔保持相当恒定。双峰中的第二个尖峰不能遵循10 Hz的去极化电流脉冲速率。它也对局部使用Cd2 +敏感。因此建议Ca2 +可能参与双峰的生成。长的去极化电流脉冲产生一系列动作电位,显示出很少的适应性和极小的后超极化,表明这些细胞几乎没有依赖Ca2 +的K +电流。许多细胞以高速率发出自发的突触后电位。这些可能被微毒素阻断。刺激外侧中隔(l.s.)核产生Cl依赖的i.p.s.p. i.p.s.p.被微毒素阻断。 γ-氨基丁酸(GABA)的局部应用产生了明显的Cl(-)依赖性电导。建议l.s.将GABA介导的抑制性连接投射到m.s.乙酰胆碱(ACh)去极化的m.s.神经元并引起输入电阻的增加。该反应存在于含TTX或Cd2 +的培养基中。阿托品阻滞了对乙酰胆碱的反应。 5-羟基色胺(5-HT)超极化m.s.神经元的方式与K +电导的增加一致。 5-HT的影响在经TTX和Cd2 +处理的女士中可见。切片(摘要以400字截断)

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