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首页> 外文期刊>The European Journal of Neuroscience >A population-based model of the nonlinear dynamics of the thalamocortical feedback network displays intrinsic oscillations in the spindling (7-14 Hz) range.
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A population-based model of the nonlinear dynamics of the thalamocortical feedback network displays intrinsic oscillations in the spindling (7-14 Hz) range.

机译:丘脑皮质反馈网络的非线性动力学的基于种群的模型显示出在Spindling(7-14 Hz)范围内的固有振荡。

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The thalamocortical network is modelled using the Wilson-Cowan equations for neuronal population activity. We show that this population model with biologically derived parameters possesses intrinsic nonlinear oscillatory dynamics, and that the frequency of oscillation lies within the spindle range. Spindle oscillations are an early sleep oscillation characterized by high-frequency bursts of action potentials followed by a period of quiescence, at a frequency of 7-14 Hz. Spindles are generally regarded as being generated by intrathalamic circuitry, as decorticated thalamic slices and the isolated thalamic reticular nucleus exhibit spindles. However, the role of cortical feedback has been shown to regulate and synchronize the oscillation. Previous modelling studies have mainly used conductance-based models and hence the mechanism relied upon the inclusion of ionic currents, particularly the T-type calcium current. Here we demonstrate that spindle-frequency oscillatory activity can also arise from the nonlinear dynamics of the thalamocortical circuit, and we use bifurcation analysis to examine the robustness of this oscillation in terms of the functional range of the parameters used in the model. The results suggest that the thalamocortical circuit has intrinsic nonlinear population dynamics which are capable of providing robust support for oscillatory activity within the frequency range of spindle oscillations.
机译:丘脑皮质网络使用神经元种群活动的Wilson-Cowan方程建模。我们表明,具有生物衍生参数的种群模型具有固有的非线性振荡动力学,并且振荡频率在主轴范围内。纺锤体振荡是一种早期睡眠振荡,其特征在于动作电位的高频猝发,随后是一段静止的,频率为7-14 Hz。纺锤体通常被认为是由丘脑内部回路产生的,因为去丘脑的丘脑片和分离的丘脑网状核均表现为纺锤体。但是,皮质反馈的作用已显示出调节和同步振荡。先前的建模研究主要使用基于电导的模型,因此该机理依赖于包含离子电流,尤其是T型钙电流。在这里,我们证明了主轴频率的振荡活动也可能来自丘脑皮质电路的非线性动力学,并且我们使用分叉分析从模型所用参数的功能范围来检查这种振荡的鲁棒性。结果表明,丘脑皮层电路具有固有的非线性种群动态,能够为纺锤体振荡的频率范围内的振荡活动提供有力的支持。

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