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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Decreased chaos of midbrain dopaminergic neurons after serotonin denervation.
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Decreased chaos of midbrain dopaminergic neurons after serotonin denervation.

机译:血清素去神经后中脑多巴胺能神经元的混乱减少。

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Neuropharmacological investigations aimed at understanding the electrophysiological correlates between drug effect and action potential trains have usually been carried out with the analysis of firing rate and bursting activity. In this study, a selective alteration of neural circuits providing inputs to ventral tegmental area dopaminergic neurons has been produced, and the corresponding electrophysiological correlates have been investigated by nonlinear dynamical analysis. The nonlinear prediction method combined with Gaussian-scaled surrogate data has been used to show the chaotic structure in the time-series corresponding to the electrical activity of ventral tegmental area dopaminergic neurons, extracellularly recorded in vivo. A decrease in chaos of ventral tegmental area dopaminergic neurons was found in a group of rats lesioned with 5,7-dihydroxytryptamine, a neurotoxin which selectively destroys serotonergic terminals. The chaos content of ventral tegmental area dopaminergic neurons in the control group and the decrease of chaos in the lesioned group cannot be explained in terms of standard characteristics of neuronal activity (firing rate, bursting activity). Moreover, in the control group a positive correlation has been found between the density-power-spectrum of the interspike intervals and the chaos content measured by nonlinear prediction S score; this relation was lost in the lesioned group. It is concluded that the impaired serotonergic tone induced by 5,7-dihydroxytryptamine reduces the chaotic behaviour of the dopaminergic cell firing pattern, while retaining many standard interspike interval characteristics. The functional role of this behaviour in a neuronal coding problem context and the implications for the pathophysiology of some mental disorders are discussed.
机译:为了了解药物作用与动作电位序列之间的电生理关系,通常进行了神经药理学研究,并分析了射速和爆发活性。在这项研究中,产生了神经回路的选择性改变,为腹侧被盖区多巴胺能神经元提供输入,并且通过非线性动力学分析研究了相应的电生理相关性。非线性预测方法结合高斯尺度的替代数据已被用于显示时间序列中与腹侧被盖区多巴胺能神经元的电活动相对应的混沌结构,并在体内进行了细胞外记录。在一组受5,7-二羟基色胺抑制的大鼠中发现腹侧被盖区多巴胺能神经元的混乱程度降低,这是一种选择性破坏5-羟色胺能终末的神经毒素。对照组的腹侧被盖区多巴胺能神经元的混沌含量和病变组的混沌的减少不能用神经元活动的标准特征(射击率,爆发活动)来解释。此外,在对照组中,尖峰间隔的密度-功率谱与通过非线性预测S分数测得的混沌含量之间存在正相关。在患病人群中这种关系已经消失了。结论是5,7-二羟基色胺引起的5-羟色胺能减弱可降低多巴胺能细胞放电模式的混沌行为,同时保留许多标准的峰间间隔特征。讨论了这种行为在神经元编码问题中的功能作用以及对某些精神障碍的病理生理学的影响。

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