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Bright light transmits through the brain: Measurement of photon emissions and frequency-dependent modulation of spectral electroencephalographic power

机译:明亮的光通过大脑传输:光子发射的测量和频谱脑电图功率的频率依赖性调制

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摘要

Photons are emitted during brain activity and when applied externally alter its functional connectivity during the resting state. In the present study we applied constant or time varying light (~10,000 lux) stimuli to one side of the skull and measured by photomultiplier tubes the photon density emitted from the opposite side of the skull along its two horizontal planes. Global quantitative electroencephalographic activity (QEEG) was recorded simultaneously. Reliable increases of ~2.5 × 10-11 W· m-2 during either constant or specific flash frequencies between 3 and 7 Hz as well as enhanced QEEG power in the theta and low beta range were measured. According to source localization by Low Resolution Electromagnetic Tomography (LORETA) the right parahippocampal region was particularly enhanced. Calculations employing known quantitative values for permeability and permittivity of brain tissue were consistent with this frequency band. Estimated concentrations of protons from hydronium ions indicated a Grotthuss chain-like process for moving photon energy through the cerebral medium may have mediated the distance-dependent latency. The results suggest that external light is transmitted through cerebral tissue, can be measured externally, and significantly affects functional connectivity. The findings support the conclusions of Starck et al. (World Journal Neuroscience, 2012).
机译:光子是在大脑活动期间发出的,在外部使用时会在静止状态下改变其功能连接性。在本研究中,我们对头骨的一侧施加了恒定或随时间变化的光(〜10,000 lux)刺激,并通过光电倍增管测量了从头骨的另一侧沿其两个水平面发射的光子密度。同时记录全球定量脑电图活动(QEEG)。在3到7 Hz的恒定或特定闪光频率下,在theta和低β范围内,可靠的〜2.5×10-11 W·m-2的增加以及QEEG功率的增加被测量。根据低分辨率电磁层析成像(LORETA)进行的源定位,右侧海马旁区域特别增强。采用已知定量值进行的脑组织通透性和介电常数的计算与此频段一致。从水合氢离子估计的质子浓度表明,光子能量通过大脑介质移动的格罗特斯链状过程可能介导了距离依赖性潜伏期。结果表明,外部光通过大脑组织传输,可以从外部进行测量,并且会严重影响功能连接。这些发现支持了Starck等人的结论。 (世界神经科学杂志,2012)。

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