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Cocaine-Induced Changes in Low-Dimensional Attractors of Local Field Potentials in Optogenetic Mice

机译:可卡因诱导光遗传学小鼠局部场电位的低维吸引子变化。

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摘要

Optogenetically evoked local field potential (LFP) recorded from the medial prefrontal cortex (mPFC) of mice during basal conditions and following a systemic cocaine administration were analyzed. Blue light stimuli were delivered to mPFC through a fiber optic every 2 s and each trial was repeated 100 times. As in the previous study, we used a surrogate data method to check that nonlinearity was present in the experimental LFPs and only used the last 1.5 s of steady activity to measure the LFPs phase resetting induced by the brief 10 ms light stimulus. We found that the steady dynamics of the mPFC in response to light stimuli could be reconstructed in a three-dimensional phase space with topologically similar “8”-shaped attractors across different animals. Therefore, cocaine did not change the complexity of the recorded nonlinear data compared to the control case. The phase space of the reconstructed attractor is determined by the LFP time series and its temporally shifted versions by a multiple of some lag time. We also compared the change in the attractor shape between cocaine-injected and control using (1) dendrogram clustering and (2) Frechet distance. We found about 20% overlap between control and cocaine trials when classified using dendrogram method, which suggest that it may be possible to describe mathematically both data sets with the same model and slightly different model parameters. We also found that the lag times are about three times shorter for cocaine trials compared to control. As a result, although the phase space trajectories for control and cocaine may look similar, their dynamics is significantly different.
机译:分析了在基础条件下和全身性可卡因给药后从小鼠内侧前额叶皮层(mPFC)记录的光遗传诱发局部场电位(LFP)。每2秒钟通过光纤将蓝光刺激传递到mPFC,并且每个试验重复100次。与之前的研究一样,我们使用替代数据方法来检查实验LFP中是否存在非线性,并且仅使用稳定活动的最后1.5 s来测量短暂的10 ms光刺激引起的LFP相复位。我们发现,mPFC对光刺激的稳定动力学可以在三维相空间中重建,该相空间具有跨不同动物的拓扑相似的“ 8”形吸引子。因此,与对照相比,可卡因没有改变记录的非线性数据的复杂性。重建吸引子的相空间由LFP时间序列及其时间偏移版本确定,该延迟时间是某个滞后时间的倍数。我们还比较了注射可卡因和使用(1)树状图聚类和(2)Frechet距离的对照之间的吸引子形状变化。当使用树状图法进行分类时,我们发现对照试验和可卡因试验之间有大约20%的重叠,这表明可能可以用相同的模型和略有不同的模型参数在数学上描述两个数据集。我们还发现,与对照相比,可卡因试验的滞后时间缩短了约三倍。结果,尽管控制和可卡因的相空间轨迹看起来相似,但是它们的动力学却有很大不同。

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