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振荡神经元和双细胞网络中的频率与爆发持续时间。

Frequency and burst duration in oscillating neurons and two-cell networks.

作者信息

Skinner F K, Turrigiano G G, Marder E

机构信息

Biology Department, Brandeis University, Waltham, MA 02254-9110.

出版信息

Biol Cybern. 1993;69(5-6):375-83.

PMID:8274537
Abstract

We study the relationship of injected current to oscillator period in single neurons and two-cell model networks formed by reciprocal inhibitory synapses. Using a Morris-Lecar-like model, we identify two qualitative types of oscillatory behavior for single model neurons. The "classical" oscillator behavior is defined as type A. Here the burst duration is relatively constant and the frequency increases with depolarization. For oscillator type B, the frequency first increases and then decreases when depolarized, due to the variable burst duration. Our simulations show that relatively modest changes in the maximal inward and outward conductances can move the oscillator from one type to another. Cultured stomatogastric ganglion neurons exhibit both A and B type behaviors and can switch between the two types with pharmacological manipulation. Our simulations indicate that the stability of a two-cell network with injected current can be extended with inhibitory coupling. In addition, two-cell networks formed from type A or type B oscillators behave differently from each other at lower synaptic strengths.

摘要

我们研究了单神经元以及由相互抑制性突触形成的双细胞模型网络中注入电流与振荡周期之间的关系。使用类Morris-Lecar模型,我们确定了单模型神经元振荡行为的两种定性类型。“经典”振荡行为被定义为A类。在此,爆发持续时间相对恒定,频率随去极化增加。对于B类振荡器,由于爆发持续时间可变,去极化时频率先增加后降低。我们的模拟表明,最大内向和外向电导的相对适度变化可使振荡器从一种类型转变为另一种类型。培养的口胃神经节神经元表现出A类和B类行为,并且可以通过药理学操作在两种类型之间切换。我们的模拟表明,注入电流的双细胞网络的稳定性可通过抑制性耦合得到扩展。此外,由A类或B类振荡器形成的双细胞网络在较低突触强度下表现彼此不同。

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