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人体超微弱光子发射的多色光谱模式分析

Polychromatic spectral pattern analysis of ultra-weak photon emissions from a human body.

作者信息

Kobayashi Masaki, Iwasa Torai, Tada Mika

机构信息

Department of Electronics and Intelligent Systems, Tohoku Institute of Technology, Sendai 982-8577, Japan.

Department of Electronics and Intelligent Systems, Tohoku Institute of Technology, Sendai 982-8577, Japan.

出版信息

J Photochem Photobiol B. 2016 Jun;159:186-90. doi: 10.1016/j.jphotobiol.2016.03.037. Epub 2016 Apr 7.

Abstract

Ultra-weak photon emission (UPE), often designated as biophoton emission, is generally observed in a wide range of living organisms, including human beings. This phenomenon is closely associated with reactive oxygen species (ROS) generated during normal metabolic processes and pathological states induced by oxidative stress. Application of UPE extracting the pathophysiological information has long been anticipated because of its potential non-invasiveness, facilitating its diagnostic use. Nevertheless, its weak intensity and UPE mechanism complexity hinder its use for practical applications. Spectroscopy is crucially important for UPE analysis. However, filter-type spectroscopy technique, used as a conventional method for UPE analysis, intrinsically limits its performance because of its monochromatic scheme. To overcome the shortcomings of conventional methods, the authors developed a polychromatic spectroscopy system for UPE spectral pattern analysis. It is based on a highly efficient lens systems and a transmission-type diffraction grating with a highly sensitive, cooled, charge-coupled-device (CCD) camera. Spectral pattern analysis of the human body was done for a fingertip using the developed system. The UPE spectrum covers the spectral range of 450-750nm, with a dominant emission region of 570-670nm. The primary peak is located in the 600-650nm region. Furthermore, application of UPE source exploration was demonstrated with the chemiluminescence spectrum of melanin and coexistence with oxidized linoleic acid.

摘要

超微弱光子发射(UPE),通常也被称为生物光子发射,普遍存在于包括人类在内的广泛生物体中。这种现象与正常代谢过程中产生的活性氧(ROS)以及氧化应激诱导的病理状态密切相关。由于其潜在的非侵入性,人们长期以来一直期待利用UPE提取病理生理信息,以促进其在诊断中的应用。然而,其微弱的强度和UPE机制的复杂性阻碍了它在实际应用中的使用。光谱学对于UPE分析至关重要。然而,作为UPE分析的传统方法,滤光片型光谱技术因其单色方案本质上限制了其性能。为了克服传统方法的缺点,作者开发了一种用于UPE光谱模式分析的多色光谱系统。它基于高效的透镜系统和带有高灵敏度、冷却电荷耦合器件(CCD)相机的透射型衍射光栅。使用所开发的系统对人体指尖进行了光谱模式分析。UPE光谱覆盖450 - 750nm的光谱范围,主要发射区域为570 - 670nm。主峰位于600 - 650nm区域。此外,通过黑色素的化学发光光谱以及与氧化亚油酸的共存证明了UPE源探索的应用。

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