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Reflection of cortical activation pattern in the human EEG phase structure

机译:皮质激活模式在人脑电图阶段结构中的反射

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Investigation was fulfilled on healthy subjects (22) and on outpatients (62). The EEG by the standard scheme as recorded at resting with open and closed eyes and under different functional loads. These records were processed in accordance with the EEC phase structure with the aid of computer animation technology. The main idea of the phase structure technology consists in rejection of one supporting lead. Time shifts were measured only between two neighbouring electrodes, so that the oscillations under comparison were always highly coherent. Time errors were evaluated according to crosscorrelation function maximum shift. The differences between high- and low-frequency EEG rhythms were shown to be only quantitative from the phase structure viewpoint. Qualitatively, the rhythm properties were equal and came to slow (second) phase structure oscillations. Low frequency activity compared to high frequency one was characterized by greater phase shifts from electrode to electrode. Phase shifts of potentials are forming the structure which, as a whole, is very similar in different people and is reproduced in different states. Initial EEG waves appearance is statistical linked with main sensory projections: visual (occiput), auditory (temples) and somatic (parietal region) with addition of frontal region. Redistribution of phase leadership in favor of occipital pole and to both temporal regions when eyes are open is described. It is apparently dependent on the sensory surge level from thalamus to a given cortex region. Phase gradient direction seems to reflect the cortex current density gradient which is parallel to surface. It can be used for localization of compact sources lying near to cortex. nauk
机译:对健康受试者(22)和门诊病人(62)履行调查。标准方案的脑电图以打开和闭合的眼睛和不同的功能载荷记录在休息时。借助计算机动画技术,根据EEC相结构处理这些记录。相位结构技术的主要思想包括拒绝一个支持铅。仅在两个相邻电极之间测量时间换档,使得在比较下的振荡始终是高度相干的。根据跨相关函数最大移位评估时间误差。显示高频和低频EEG节奏之间的差异仅被从相结构观点定量。定性地,节奏性质是相等的,并且变得缓慢(第二)相位结构振荡。与高频相比的低频活动的特征在于从电极到电极的更大相移。电位的相移形成了整体的结构,这些结构在不同的人中非常相似,并且在不同的状态下再现。初始EEG波外观与主要感觉投影有统计学:视觉(枕面),听觉(寺庙)和体细胞(俯仰区域),添加前区域。描述了阶段领导的重新分布,有利于眼睛枕头和颞部区域打开时。显然依赖于从丘脑到给定皮质区域的感官喘振水平。相位梯度方向似乎反映了平行于表面的皮质电流密度梯度。它可用于靠近皮质的紧凑型来源的定位。 Nauk.

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