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Time-Frequency Analysis of Error Related Activity in Anterior Cingulate Cortex

机译:前筒皮层中误差相关活动的时频分析

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Error related activity in local field potentials recorded in dorsal anterior cingulate cortex (dACC) of non-human primates is analyzed using ensemble empirical mode decomposition (EEMD). Neuronal activity in this region was recorded in a male rhesus monkey trained in the problem solving task (PS). It was hypothesized that activity in this region could reflect a modification of control just before execution errors, hence predicting the error about to be committed. The features obtained from time-frequency energy distribution, intrinsic mode functions (IMF) and higher order statistics calculated over IMFs were used to distinguish error related activity. The analysis has revealed the significant increase in energy of IMF4-IMF7, resulting in significant total energy increase immediately before and after execution errors. Higher order spectra analysis determined no difference in symmetry and shape of sample distribution when compared to control segments from successful trials. However, increased sample variance during errors combined with increase in energy indicates the unstable neural activation in this cortical region during execution errors resulting in less control over the current processing.
机译:使用集合经验模式分解(EEMD)分析了非人类主机的背侧铰接皮质(DACC)中记录的局部场电位中的误差相关活动。该地区的神经元活性被记录在训练解决任务(PS)的雄性恒河猴中。假设该区域的活动可以在执行错误之前反映对控制的修改,因此预测要提交的错误。从时频能量分布,内在模式函数(IMF)和通过IMF计算的高阶统计器获得的特征用于区分误差相关活动。分析揭示了IMF4-IMF7能量的显着增加,导致在执行误差之前和之后立即产生显着的总能量。与来自成功试验的控制段相比,更高阶谱分析在样品分布的对称性和形状的情况下确定了不同的差异。然而,与能量的增加相结合的误差期间的样本方差提高了在执行误差期间在该皮质区域中的不稳定神经激活,导致对当前处理的控制较小。

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