首页> 外文期刊>NeuroQuantology: an interdisciplinary journal of neuroscience and quantum physics >Enhancement of Theta and Gamma Activity Power Within Fixed Sections of Human Brains Stimulated by Sean Harribance’s Electroencephalographic Configuration: Is He Equivalent to a “Universal Donor” for Entanglement?
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Enhancement of Theta and Gamma Activity Power Within Fixed Sections of Human Brains Stimulated by Sean Harribance’s Electroencephalographic Configuration: Is He Equivalent to a “Universal Donor” for Entanglement?

机译:Sean Harribance的脑电图配置刺激了人类大脑固定区域内Theta和Gamma活动能力的增强:他是否等同于“普遍捐赠者”的纠缠?

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The persistence and proficiency by which Sean Harribance has accessed non-local information about the detailed experiences and histories of other people suggests congruence with intrinsic brain structures. Brain-appropriate (2 μV) voltage levels of the electroencephalographic patterns that had been recorded from Mr. Harribance’s frontal, centro-parietal, and temporal regions during his most accurate descriptions were applied by needle electrodes to left and right hippocampal formations, temporal stems, caudates, internal capsules, parahippocampal gyri, and insulas within coronal sections of fixed human brain sections. Spectral analyses obtained by adjacent needle sensors indicated that different components of the Harribance Configuration (HC), particularly temporal (T4), and centro-parietal (C4) regions elicited enhanced spectral power within the grey relative to white matter for the theta (4-7.5 Hz) band while only the HC component from the right temporal (T4) elicited enhanced power within the gamma (40 Hz) band for both grey and white matter. These enhancements could reflect the presence of intrinsic spatial properties within brain tissue that survive fixation and remain responsive to congruent applied electromagnetic patterns. The conspicuous presence of the fundamental and harmonic components of the Schumann Resonance peak frequencies within the HC and recent real-time measurements of intermittent coherence between living human brains and Schumann activities may relate to the Harribance effect. One interpretation is that his accurate descriptions of the experiences and histories of people he has never met reflect access to a source of non-local information associated with the earth-ionosphere wave guide within which all human beings are immersed.
机译:肖恩·哈里比斯(Sean Harribance)通过持久性和熟练程度访问了有关其他人的详细经历和历史的非本地信息,这表明与内在的大脑结构是一致的。从Harribance先生的最准确描述中记录的脑电图模式的脑适度(2μV)电压通过针电极施加到左右海马结构,颞茎,尾状,内囊,海马旁回旋肌和人脑固定部分冠状区域内的岛状体。相邻针头传感器获得的光谱分析表明,“骚动构型”(HC)的不同组成部分,尤其是颞部(T4)和顶顶中心(C4)区域在theta方面相对于白质在灰度范围内引起了增强的光谱功率(4- 7.5 Hz)频段,而仅右颞部(T4)的HC分量在灰度(40 Hz)频段内引起灰白色物质的增强功率。这些增强作用可能反映出脑组织内固有的空间特性的存在,这些特性在固定后仍可幸存,并且仍能对同等的电磁模式产生响应。 HC内Schumann共振峰频率的基波和谐波分量明显存在,以及最近对人脑和Schumann活动之间的间歇性连贯性进行实时测量,可能与Harribance效应有关。一种解释是,他对从未遇见过的人们的经历和历史的准确描述反映了对与地球电离层波导相关联的非本地信息源的访问,所有人类都沉浸在其中。

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