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Volume conduction and EEG measurements within the brain: A quantitative approach to the influence of electrical spread on the linear relationship of activity measured at different locations

机译:大脑内的体积传导和脑电图测量:一种定量方法,用于研究电扩散对在不同位置测得的活动的线性关系的影响

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摘要

When recording referentially brain field potentials with several electrodes at relatively small tip separations, a linear relationship between the simultaneously recorded signals may arise solely as a result of volume conduction (electrical spread). A method is described to quantify the linear relationship due to electrical spread in a situation with independent neuronal sources. In rat under urethane anaesthesia, records were made during theta activity in the hippocampus with two electrodes against a reference with electrode tip separations between 0–3 mm. Frequency analysis of EEG epochs and computation of coherence were carried out. As an estimate of linear relationship between the recorded signals due to electrical spread the mean value of coherence (cohm) of a frequency band outside the range containing most power of theta rhythm was calculated. The results show a fairly constant decay of cohm at increasing electrode separation, reaching a value of 0.1 at a distance varying between 0.8-1.4 mm. This means that neurones at a distance of 0.4–0.7 mm from a recording electrode make a contribution of −25 dB to a recorded signal of 0 dB. The results of a simple model of volume conduction producing linear relationship between two recorded signals are in good agreement with the experimental results. The influence of linear relationship of the activity of neurones on volume conduction properties and on coherence is discussed.
机译:当以相对较小的尖端间距用几个电极来参考地记录脑电势时,同时记录的信号之间的线性关系可能仅由于体积传导(电扩散)而产生。描述了一种方法来量化在具有独立神经元源的情况下由于电扩散引起的线性关系。在氨基甲酸乙酯麻醉下的大鼠中,记录了海马活动期间的活动,其中两个电极相对于参考电极,电极尖端间距在0–3 mm之间。进行了脑电图时代的频率分析和相干性计算。作为由电扩散引起的记录信号之间的线性关系的估计,计算了在包含最大θ心律功率的范围之外的频带的相干性(cohm)的平均值。结果表明,随着电极间距的增加,欧姆电阻会相当恒定地衰减,在0.8-1.4毫米之间的距离处达到0.1的值。这意味着距记录电极0.4-0.7 mm的神经元对记录的0 dB信号的贡献为-25 dB。一个简单的体积传导模型在两个记录信号之间产生线性关系,其结果与实验结果吻合良好。讨论了神经元活性的线性关系对体积传导特性和相干性的影响。

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