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Electrophysiological properties and glucose responsiveness of guinea-pig ventromedial hypothalamic neurones in vitro.

机译:豚鼠腹膜下丘脑神经元的体外电生理特性和葡萄糖反应性。

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摘要

The membrane properties of neurones in the guinea-pig ventromedial hypothalamic nucleus (v.m.h.) were studied in in vitro brain slice preparations. The average resting potential was -62.9 +/- 5.4 mV (mean +/- S.D.), input resistance was 155 +/- 58 M omega, and action potential amplitude was 69.9 +/- 6.3 mV. Three types of neurone were identified. The type A neurones were characterized by a short membrane time constant (7.3 +/- 2.0 ms) and a small after-hyperpolarization (a.h.p.) (2.0 +/- 1.2 mV) with a short half decay time of 67 +/- 55 ms after stimulation with a long outward current pulse. Type B had a long time constant (18.8 +/- 5.7 ms) and a large a.h.p. (6.9 +/- 2.4 mV) with a medium half decay time of 203 +/- 90 ms. Type C was characterized by a long time constant (14.3 +/- 2.3 ms) and a large a.h.p. (6.5 +/- 1.5 mV) with a long half decay time of 478 +/- 230 ms. The slopes of the frequency-current (f-I) plots of the three types were different, particularly for the first spike interval. The slopes for the type A (414 +/- 102 impulses s-1 nA-1) and type B neurones (480 +/- 120 impulses s-1 nA-1) were steeper than that for the type C neurones (178 +/- 41 impulses s-1 nA-1). This difference is probably related to the relatively long first interval observed in the type C neurones. In all type B and a few type C neurones, when the membrane potential was hyperpolarized beyond--65 mV the application of orthodromic or direct stimulation generated a burst of spikes, consisting of a low-threshold response (l.t.r.) of low amplitude and superimposed high-frequency spikes. At the original resting potential, outward current pulses produced a train of low-frequency spikes. In type C neurones maintained in a depolarized state (about -50 mV), inward current pulses produced a specific delay of the return to the original membrane potential. This delayed return was thought to be generated by activation of a transient K+ (IA) conductance. Stimulation at the lateral edge of the v.m.h. produced excitatory post-synaptic potentials (e.p.s.p.s) in type A neurones, e.p.s.p.s with l.t.r. in type B neurones and e.p.s.p.-inhibitory post-synaptic potential sequences in type C neurones. About 20% of v.m.h. neurones, particularly the type C cells, were depolarized by glucose application with an associated increase in the input membrane resistance.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:在体外脑切片制剂中研究了豚鼠腹膜下丘脑核(v.m.h.)中神经元的膜特性。平均静息电位为-62.9 +/- 5.4 mV(平均+/- S.D.),输入电阻为155 +/- 58 MΩ,动作电位振幅为69.9 +/- 6.3 mV。确定了三种类型的神经元。 A型神经元的特征在于较短的膜时间常数(7.3 +/- 2.0 ms)和较小的超极化后(ahp)(2.0 +/- 1.2 mV),半衰期较短的67 +/- 55 ms用长的向外电流脉冲刺激后。 B型具有很长的时间常数(18.8 +/- 5.7 ms)和较大的a.h.p. (6.9 +/- 2.4 mV)(半衰期为203 +/- 90 ms)。 C型的特点是时间常数长(14.3 +/- 2.3毫秒)和大a.h.p. (6.5 +/- 1.5 mV),半衰期很长,为478 +/- 230 ms。三种类型的频率-电流(f-I)图的斜率不同,特别是对于第一个尖峰间隔。 A型(414 +/- 102冲动s-1 nA-1)和B型神经元(480 +/- 120冲动s-1 nA-1)的斜率比C型神经元(178 + /-41个脉冲s-1 nA-1)。这种差异可能与在C型神经元中观察到的较长的第一间隔有关。在所有B型和少数C型神经元中,当膜电位超极化超过--65 mV时,正畸或直接刺激的施加会产生尖峰脉冲,包括低幅值的低阈值响应(ltr)和叠加的高频尖峰。在原始的静止电位下,向外的电流脉冲会产生一系列的低频尖峰。在维持去极化状态(约-50 mV)的C型神经元中,内向电流脉冲产生了恢复到原始膜电位的特定延迟。该延迟的返回被认为是由瞬态K +(IA)电导的激活产生的。在v.m.h的外侧边缘进行刺激产生A型神经元的兴奋性突触后电位(e.p.s.p.s)。 B型神经元中的Esp抑制和C型神经元中e.p.s.p.抑制的突触后电位序列。约时速的20%神经元,特别是C型细胞,由于葡萄糖的施加而去极化,并伴随着输入膜阻力的增加。(摘要截短为400个字)

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