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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Electrical Stimulation of the Human Cerebral Cortex by Extracranial Muscle Activity: Effect Quantification With Intracranial EEG and FEM Simulations
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Electrical Stimulation of the Human Cerebral Cortex by Extracranial Muscle Activity: Effect Quantification With Intracranial EEG and FEM Simulations

机译:颅外肌肉活动对人类大脑皮层的电刺激:颅内脑电图和有限元模拟的效果量化

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Objective: Electric fields (EF) of approx. 0.2 V/m have been shown to be sufficiently strong to both modulate neuronal activity in the cerebral cortex and have measurable effects on cognitive performance. We hypothesized that the EF caused by the electrical activity of extracranial muscles during natural chewing may reach similar strength in the cerebral cortex and hence might act as an endogenous modality of brain stimulation. Here, we present first steps toward validating this hypothesis. Methods: Using a realistic volume conductor head model of an epilepsy patient having undergone intracranial electrode placement and utilizing simultaneous intracranial and extracranial electrical recordings during chewing, we derive predictions about the chewing-related cortical EF strength to be expected in healthy individuals. Results: We find that in the region of the temporal poles, the expected EF strength may reach amplitudes in the order of 0.1–1 V/m. Conclusion: The cortical EF caused by natural chewing could be large enough to modulate ongoing neural activity in the cerebral cortex and influence cognitive performance. Significance: The present study lends first support for the assumption that extracranial muscle activity might represent an endogenous source of electrical brain stimulation. This offers a new potential explanation for the puzzling effects of gum chewing on cognition, which have been repeatedly reported in the literature.
机译:目的:电场(EF)约。 0.2 V / m已被证明足够强大,既可以调节大脑皮层的神经元活动,又可以对认知表现产生可测量的影响。我们假设自然咀嚼过程中由颅外肌肉的电活动引起的EF可能在大脑皮层中达到类似的强度,因此可能充当大脑刺激的内源性方式。在这里,我们提出了验证该假设的第一步。方法:使用经过颅内电极放置的癫痫患者的真实体积导体头部模型,并在咀嚼过程中同时使用颅内和颅外电记录,我们得出了健康个体中与咀嚼相关的皮质EF强度的预测。结果:我们发现,在颞极区域,期望的EF强度可能达到0.1–1 V / m的幅度。结论:自然咀嚼引起的皮层EF可能足以调节大脑皮质正在进行的神经活动并影响认知能力。启示:本研究为颅外肌肉活动可能代表脑电刺激的内源性这一假设提供了第一支持。这为口香糖对认知的令人困惑的作用提供了新的潜在解释,这在文献中已多次报道。

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