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体外乳头复合体的电生理学。II. 内侧乳头神经元。

Electrophysiology of the mammillary complex in vitro. II. Medial mammillary neurons.

作者信息

Alonso A, Llinás R R

机构信息

Department of Physiology and Biophysics, New York University Medical Center, New York 10016.

出版信息

J Neurophysiol. 1992 Oct;68(4):1321-31. doi: 10.1152/jn.1992.68.4.1321.

Abstract
  1. The electrophysiological properties of guinea pig medial mammillary body (MMB) neurons were studied using an in vitro slice preparation. 2. The neurons (n = 80) had an average resting potential of -57 +/- 5.5 (SD) mV, an input resistance of 176 +/- 83 M omega, and a spike amplitude of 58 +/- 15.7 mV. Most of the neurons were silent at rest (n = 52), but some fired spontaneous single spikes (n = 16) or spike bursts (n = 14). 3. The main electrophysiological characteristic of MMB neurons was the ability to generate Ca(2+)-dependent regenerative events, which resulted in very robust burst responses. However, this regenerative event was not the same for all neurons, ranging from typical low-threshold Ca2+ spikes (LTSs) to intermediate-threshold plateau potentials (ITPs). 4. The ITPs were distinct from the LTSs in that they lasted > or = 100 ms and were not inactivated at membrane potentials at or positive to -55 mV. 5. Some cells with a prominent ITP and no LTS (n = 36) displayed repetitive, usually rhythmic, bursting (n = 14). This ITP could be powerful enough to maintain rhythmic membrane potential oscillations after pharmacological block of Na+ conductances. 6. A group of 32 MMB neurons displayed complex bursting that was generated by activation of both LTSs and ITPs. This was established on the basis of their distinct time- and voltage-dependent characteristics. In a group of neurons (n = 14), the burst responses were exclusively generated by an LTS; however, a Ca(2+)-dependent plateau potential contributed to the generation of rebound-triggered oscillatory firing. 7. In addition to the Ca(2+)-dependent LTS and/or ITP, MMB neurons always displayed high-threshold Ca2+ spikes after reduction of K+ conductances with tetraethylammonium. 8. MMB neurons display one of the richer varieties of voltage-dependent Ca2+ conductances so far encountered in mammalian CNS. We propose that the very prominent endogenous bursting and oscillatory properties of MB neurons allow this nuclear complex to function as an oscillatory relay for the transmission of low-frequency rhythmic activities throughout the limbic circuit.
摘要
  1. 使用体外脑片制备技术研究了豚鼠内侧乳头体(MMB)神经元的电生理特性。2. 这些神经元(n = 80)的平均静息电位为 -57 ± 5.5(标准差)mV,输入电阻为176 ± 83 MΩ,动作电位幅度为58 ± 15.7 mV。大多数神经元在静息时不放电(n = 52),但有些会自发发放单个动作电位(n = 16)或动作电位簇(n = 14)。3. MMB神经元的主要电生理特征是能够产生钙依赖的再生性事件,这会导致非常强烈的簇状反应。然而,这种再生性事件在所有神经元中并不相同,范围从典型的低阈值钙峰(LTSs)到中间阈值平台电位(ITPs)。4. ITPs与LTSs的不同之处在于它们持续时间≥100 ms,并且在膜电位为 -55 mV或更正时不会失活。5. 一些具有明显ITP且无LTS的细胞(n = 36)表现出重复性的、通常是有节律的簇状放电(n = 14)。在药理学阻断钠电导后,这种ITP强大到足以维持节律性膜电位振荡。6. 一组32个MMB神经元表现出由LTSs和ITPs共同激活产生的复杂簇状放电。这是基于它们独特的时间和电压依赖性特征确定的。在一组神经元(n = 14)中,簇状反应仅由LTS产生;然而,钙依赖的平台电位有助于产生反弹触发的振荡性放电。7. 除了钙依赖的LTS和/或ITP外,在用四乙铵降低钾电导后,MMB神经元总是会出现高阈值钙峰。8. MMB神经元表现出迄今为止在哺乳动物中枢神经系统中遇到的较为丰富多样的电压依赖性钙电导之一。我们提出,MB神经元非常突出的内源性簇状放电和振荡特性使这个神经核复合体能够作为一个振荡中继,在整个边缘回路中传递低频节律性活动。

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