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首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Estimation of the number of biophotons involved in the visual perception of a single-object image: Biophoton intensity can be considerably higher inside cells than outside
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Estimation of the number of biophotons involved in the visual perception of a single-object image: Biophoton intensity can be considerably higher inside cells than outside

机译:估计单个对象图像的视觉感知中涉及的生物光子数量:细胞内部的生物光子强度可能比外部的生物光子强度高得多

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摘要

Recently, we have proposed a redox molecular hypothesis about the natural biophysical substrate of visual perception and imagery [1,6]. Namely, the retina transforms external photon signals into electrical signals that are carried to the VI (striate cortex). Then, V1 retinotopic electrical signals (spike-related electrical signals along classical axonal-dendritic pathways) can be converted into regulated ultraweak biolu-minescent photons [biophotons) through redox processes within retinotopic visual neurons that make it possible to create intrinsic biophysical pictures during visual perception and imagery. However, the consensus opinion is to consider biophotons as by-products of cellular metabolism. This paper argues that biophotons are not by-products, other than originating from regulated cellular radical/redox processes. It also shows that the biophoton intensity can be considerably higher inside cells than outside. Our simple calculations, within a level of accuracy, suggest that the real biophoton intensity in retinotopic neurons may be sufficient for creating intrinsic biophysical picture representation of a single-object image during visual perception.
机译:最近,我们提出了关于视觉感知和图像的自然生物物理底物的氧化还原分子假说[1,6]。即,视网膜将外部光子信号转换为电信号,并传送到VI(条纹皮层)。然后,可以通过视网膜局部视觉神经元内的氧化还原过程,将V1视网膜局部电信号(沿经典轴突-树突路径的与钉相关的电信号)转换为调节的超弱生物发光光子[biophotons],从而可以在视觉过程中创建内在的生物物理图像感知和图像。但是,共识是将生物光子视为细胞代谢的副产物。本文认为,生物光子不是副产物,除了源于受调节的细胞自由基/氧化还原过程。这也表明,细胞内部的生物光子强度可能比外部的生物光子强度高得多。我们在准确性水平上的简单计算表明,视网膜视神经元中的真实生物光子强度可能足以在视觉感知期间创建单个对象图像的内在生物物理图像表示。

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