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首页> 外文期刊>Journal of Neurophysiology >Bistability and its regulation by serotonin in the endogenously bursting neuron R15 in Aplysia.
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Bistability and its regulation by serotonin in the endogenously bursting neuron R15 in Aplysia.

机译:在海Ap内源性爆发性神经元R15中,5-羟色胺的双稳态及其调节。

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1. Previous computational studies of models of neuron R15 in Aplysia have indicated that several distinct modes of electrical activity may coexist at a given set of parameters, that this multistability can be modulated by transmitters such as serotonin (5-HT) and that brief perturbations of the membrane potential can induce persistent changes in the mode of electrical activity. To test these predictions, the responses of R15 neurons to injections of brief (1.5 s) current pulses were recorded intracellularly in the absence and presence of 5-HT. 2. In the absence of 5-HT, brief perturbations induced abrupt transitions in the electrical activity from bursting to beating. Such transitions were observed in approximately 20% of the cases. The duration of beating activity varied from several seconds to tens of minutes. In the presence of low concentrations (1 microM) of 5-HT, both the probability of mode transitions and the duration of induced beating activity increased significantly. 3. These results indicate that at least two stable modes of electrical activity can coexist in R15 neurons and that this bistability can be regulated by 5-HT. In general, these conclusions agree with the results from analyses of mathematical models of R15. Although the function of these dynamic properties in R15 is speculative, our results, interpreted on the background of the model, support the notion that nonlinear dynamical properties of individual neurons can endow them with richer forms of information processing than has generally been appreciated.
机译:1.先前对海Ap神经元R15模型的计算研究表明,在给定的一组参数下,几种不同的电活动模式可能共存,这种多重稳定性可以由5-羟色胺(5-HT)等递质和短暂的扰动来调节膜电位的变化可以引起电活动方式的持续变化。为了测试这些预测,在不存在和存在5-HT的情况下,在细胞内记录R15神经元对短暂(1.5 s)电流脉冲注射的反应。 2.在没有5-HT的情况下,短暂的扰动会导致电活动突然从爆发转变为跳动。在大约20%的病例中观察到了这种转变。跳动活动的持续时间从几秒钟到几十分钟不等。在低浓度(1 microM)的5-HT存在下,模式转变的可能性和诱导的跳动活动的持续时间均显着增加。 3.这些结果表明,R15神经元中可以至少存在两种​​稳定的电活动模式,并且这种双稳态可以由5-HT调节。通常,这些结论与R15数学模型的分析结果一致。尽管R15中这些动态特性的功能是推测性的,但我们在模型背景下进行解释的结果支持以下观点:单个神经元的非线性动态特性可以使它们具有比通常公认的更丰富的信息处理形式。

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