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首页> 外文期刊>Journal of Integrative Neuroscience >Modeling the spontaneous Ca2+ oscillations in astrocytes: Inconsistencies and usefulness
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Modeling the spontaneous Ca2+ oscillations in astrocytes: Inconsistencies and usefulness

机译:模拟星形胶质细胞中自发的Ca2 +振荡:不一致和有用性。

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Spontaneous calcium (Ca2+) oscillations (SCOs) in astrocytes might be a crucial signaling for the multipurpose role of this type of cell in several brain functions. To interpret experimental data of astrocytic SCOs, which has been largely observed in the last decade, several groups have attempted to accommodate biophysical models that were developed in the past for Ca2+ signaling in other cell types. In most of the cases, only predictive strategies were used to estimate specific parameters of these modified models from actual experiments. In this study, we discuss the most remarkable models used to describe Ca2+ signaling in astrocytes. At the same time, we aim to revise the particulars of applying these models to interpret epifluorescent time series obtained from large regions of interest. Specially, we developed a detailed model for global Ca2+ signaling in the somata of astrocytes. In order to estimate some of the parameters in ourmodel, we propose a deductive reasoning strategy, i.e., a statistical inference method that results from combining a filtering technique and a maximum likelihood principle. By means of computer simulations, we evaluate the accuracy of this estimation's strategy. Finally, we use the new model, in combination with a recent experimental findings by our group, to estimate the degree of cluster coupling inside the soma during the genesis of global Ca2+ events.
机译:星形胶质细胞中的自发钙(Ca2 +)振荡(SCO)可能是这种类型的细胞在多种脑功能中的多用途作用的关键信号。为了解释在过去十年中广泛观察到的星形细胞SCO的实验数据,一些研究小组试图适应过去为其他细胞类型中的Ca2 +信号传导开发的生物物理模型。在大多数情况下,仅使用预测策略从实际实验中估计这些修改后模型的特定参数。在这项研究中,我们讨论了用于描述星形胶质细胞中Ca2 +信号传导的最杰出模型。同时,我们的目标是修改应用这些模型来解释从大范围感兴趣区域获得的落射荧光时间序列的细节。特别地,我们为星形胶质细胞的体细胞中的整体Ca2 +信号传导开发了详细的模型。为了估计模型中的某些参数,我们提出了一种演绎推理策略,即一种通过结合滤波技术和最大似然原理得出的统计推断方法。通过计算机模拟,我们评估此估计策略的准确性。最后,我们使用新模型,结合我们小组最近的实验发现,来估计全球Ca2 +事件发生期间躯体内部簇耦合的程度。

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