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Fields in Electromagnetic Spectrum Emitted from Human Body. Applications in Medicine

机译:人体发出的电磁频谱中的场。在医学上的应用

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This paper presents the results of evaluation of possible biophysical methods and approaches for registering various non-ionizing radiation (NIR) wave types of the human body in the electromagnetic range. Many types of NIR (electromagnetic waves, infrared radiation, thermo radiation, bioluminescence) emitted from the human body were reviewed. In particular the results of spontaneous biophoton emission and delayed luminescence from the human body are submitted along with i nfrared thermography (IRT) results. It was shown that 1 cm 2 of skin generally emits ~85 photones for 1s. The intensity of biophoton emission ranges from 10 ?19 to 10 ?16 W/cm 2 (approx. ~1–1000 photons . cm -2. s -1 ). The specific photon emission from part of the human thumb was detected as a spectrum of various colours with the method of Color coronal spectral analysis on a device with an electrode made ??of polyethylene terephthalate (PET hostafan) with applied electric voltage of 15 kV, electric impulse duration 10 ms, and electric current frequency 15 kHz. It was established that photons corresponding to a red color emission of the visible electromagnetic spectrum have energy at 1.82 ?V. The orange color of the visible electromagnetic spectrum has energy at 2.05, yellow – 2.14, blue-green (cyan) – 2.43, blue – 2.64, and violet – 3.03 eV. The reliable result measurement norm was at E ? 2.53 eV, while the spectral range of the emission was within 380–495 nm and 570–750 nm±5 nm. Some important physical characteristics were also demonstrated (energy of hydrogen bonds, wetting angle, surface tension) of water by the methods of non-equilibrium energy (NES) and differential non-equilibrium energy (DNES) spectrum of water, that helps understand in general how electromagnetic radiation interacts with water and establishes the structural alterations of water.
机译:本文介绍了评估可能的生物物理方法和方法的结果,这些方法和方法用于记录电磁范围内人体的各种非电离辐射(NIR)波类型。审查了从人体发射的多种近红外光谱(电磁波,红外辐射,热辐射,生物发光)。特别是,自发的生物光子发射和人体延迟发光的结果与红外热成像(IRT)结果一起提交。结果表明,1 cm 2的皮肤通常在1秒钟内发出约85个光子。生物光子发射的强度范围为10?19至10?16 W / cm 2(约〜1-1000个光子。cm -2。s -1)。在带有聚对苯二甲酸乙二醇酯(PET hostafan)制成的电极,施加电压为15 kV的设备上,使用彩色冠状光谱分析法,通过彩色冠状光谱分析法检测了人拇指部位发出的特定光子发射,作为各种颜色的光谱,电脉冲持续时间10毫秒,电流频率15 kHz。已经确定,对应于可见电磁光谱的红色发射的光子的能量为1.82?V。可见电磁光谱的橙色能量为2.05,黄色– 2.14,蓝绿色(青色)– 2.43,蓝色– 2.64,紫色– 3.03 eV。可靠的结果测量标准为E? 2.53 eV,而发射光谱范围在380–495 nm和570–750 nm±5 nm之内。还通过水的非平衡能(NES)和微分非平衡能(DNES)光谱的方法论证了水的一些重要物理特性(氢键能量,润湿角,表面张力),这有助于大体理解电磁辐射如何与水相互作用并建立水的结构变化。

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