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Transfer entropy between cortical and basal ganglia electrophysiology

机译:皮质和基底神经节电生理学之间的转移熵

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Linear measures such as cross-correlation, coherence, and directed transfer functions have previously been applied to investigate the functional connectivity between brain regions. However, such methods do not account for nonlinear interactions between the signals. Separately, dopaminergic cell transplants have been shown to provide symptomatic amelioration and partial electrophysiological normalization of aberrant basal ganglia firing patterns in Parkinson's Disease. However, the precise extent and mechanisms of basal ganglia electrophysiological normalization have remained unclear. In this experiment we computed the transfer entropy between electroencephalograms (EEGs) and basal ganglia local field potentials (LFPs) from urethane-anesthetized rats, in order to investigate both linear and nonlinear interactions. We used the 6-hydroxy-dopamine lesioned medial forebrain bundle hemiparkinsonian (HP) rat model, and recorded from the substantia nigra and subthalamic nucleus of normal rats, HP rats, and HP rats with murine fetal ventral mesencephalic cell transplants, looking separately at slow wave EEG epochs versus global activation epochs. We found that both the crosscorrelation and the transfer entropy between the motor cortical EEG and basal ganglia LFPs was increased in the HP group (p<0.05) and returned to normal levels in the grafted group, in most nuclei and conditions. However, the transfer entropy more robustly showed the difference between the groups. Our findings indicate that transfer entropy is a sensitive tool for nonlinear inter-nucleic functional connectivity analyses, and demonstrate the novel restorative ability of dopaminergic grafts for the parkinsonian basal ganglia electrophysiology.
机译:先前已经应用了诸如互相关,相干和定向传递函数的线性测量来研究脑区之间的功能连接。然而,这些方法不考虑信号之间的非线性相互作用。另外,已显示多巴胺能细胞移植物,以提供帕金森病中异常基础神经节烧制模式的症状改善和部分电生理学标准化。然而,基础神经节电生理标准化的精确程度和机制仍不清楚。在该实验中,我们从氨基甲酸酯 - 麻醉大鼠中计算了脑电图(EEG)和基底神经节局部电位(LFP)之间的转移熵,以研究线性和非线性相互作用。我们使用了6-羟基 - 多巴胺损伤的内侧前脑束Hemiparkinsonian(HP)大鼠模型,并用鼠胎儿腹部患神细胞移植物的正常大鼠,HP大鼠和HP大鼠的真实性NIGRA和次粒子核记录,分开看波峰时期与全球激活时期。我们发现,在HP组(P <0.05)中,电机皮质脑电图和基底神经节LFP之间的跨相关性和转移熵增加(P <0.05)并在嫁接组中恢复到正常水平,在大多数核和条件下。然而,转移熵更加强大地显示了组之间的差异。我们的研究结果表明,转移熵是非线性核苷类功能性连接分析的敏感工具,并证明了多巴胺能移植物用于Parkinsonian基础神经节电生理学的新型恢复能力。

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