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Investigation of events in the EEG signal correlated with changes in both oxygen and glucose in the brain

机译:脑电信号事件与大脑中氧气和葡萄糖变化相关的研究

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Since the brain has no constant energy reserves, a continuous supply of energy substrates is central to all processes that maintain the functionality of the neuronal cells. EEG has been found to be tightly related to variations in the concentration of the energy substrates such as oxygen and glucose. Prediction of neural activation is particularly useful as it could contribute significantly in the prevention, stabilization, or treatment of diseases such as Alzheimer's disease, migraine headache, and ischemic stroke, in which signaling between neurons and brain vessels is threatened because of dysfunctions that affect the neuronal, astroglial, and/or vascular components of the neurovascular unit. This work deals with investigation of events in the EEG signal correlated with changes in both oxygen and glucose signals in the brain. The topic is to implement a model that through measures of oxygen and glucose in the brain of rats allow to achieve a good estimation of the neural signals, which reflecting the simultaneous metabolic changes, during spontaneous oscillation and electrical stimulation.
机译:由于大脑没有恒定的能量储备,因此持续提供能量底物对于维持神经元细胞功能的所有过程至关重要。已经发现EEG与能量底物例如氧气和葡萄糖的浓度变化紧密相关。神经激活的预测特别有用,因为它可能在预防,稳定或治疗诸如阿尔茨海默氏病,偏头痛和缺血性中风等疾病中发挥重要作用,在这些疾病中,神经元和脑血管之间的信号传导受到影响的功能障碍而受到威胁。神经血管单位的神经元,星形胶质和/或血管成分。这项工作涉及脑电信号中与氧气和葡萄糖信号变化相关的事件的研究。主题是实现一种模型,该模型通过测量大鼠大脑中的氧气和葡萄糖,可以实现对自发振荡和电刺激过程中反映同时代谢变化的神经信号的良好估计。

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