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Bioinfluence with Infrared Thermal and Electromagnetic Fields as a Therapeutic Approach of Hamsters with Experimental Graffi Myeloid Tumor

机译:具有红外热和电磁场的生物影响,作为实验性格拉夫骨髓肿瘤的仓鼠的治疗方法

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The aim of the present experiments was to study the effect of bioinfluence - Infrared thermal field (ITF) and electromagnetic fields (e.m. fields) on the progression of experimental tumor in hamsters.Spectral analysis methods called Non-equilibrium spectrum (NES) and Differential non-equilibrium spectrum (DNES) for 1% solutions of blood serum from hamsters with cancer and healthy hamsters were investigated. Drossinakis had an effect on hamsters with cancer. Results are obtained with the DNES method compared to the control serum samples of hamsters with cancer and healthy hamsters. The spectrum was obtained in the range (-0.0937 eV; 13.23 μm; 755 cm -1 ) - (-0.1387 eV; 8.95; μm; 1117 cm -1 ). The average energy (?E H...O ) of hydrogen Н…O-bonds among individual molecules H 2 O after treatment of Drossinakis was measured by NES- and DNES-methods. The result ?E=-0.0071±0.0011 eV is according control serum samples of hamsters with cancer and ?E=-0.0035±0.0011 eV is for healthy ones. These results suggest the restructuring of ?E H...O values among H 2 O molecules with a statistically reliable increase of local extremums in DNES-spectra. Local extremum was obtained at (-0.1212) eV, which is an indicator of anti-inflammatory effect. Another local extremum was obtained at (-0.1387) eV, which is an indicator of inhibition of development of tumor cells at the molecular level. The effects of Drossinakis influence– anti-inflammatory, antioxidant, and cancer development inhibition are shown. This article deals with the review of the basic biophysical-biochemical and biological processes underlying the influence of Drossinakis. The authors are studying their physical-chemical properties and biophysical and biological effects on the organism of hamsters. Another research by Toshkova has shown that the life span of cancer hamsters influenced by Drossinakis has been increased.
机译:本实验的目的是研究生物影响-红外热场(ITF)和电磁场(em场)对仓鼠实验性肿瘤进展的影响。光谱分析方法称为非平衡光谱(NES)和差分非对患有癌症的仓鼠和健康仓鼠的1%血清溶液的平衡平衡光谱(DNES)进行了研究。 Drossinakis对患有癌症的仓鼠有影响。与具有癌症的仓鼠和健康的仓鼠的对照血清样品相比,使用DNES方法获得的结果。在(-0.0937 eV; 13.23μm; 755 cm -1)-(-0.1387 eV; 8.95;μm; 1117 cm -1)范围内获得光谱。用NES方法和DNES方法测量了在Drossinakis处理后的单个分子H 2 O中氢Н…O键的平均氢能(?E H ... O)。结果ΔE= -0.0071±0.0011eV是根据患癌的仓鼠的对照血清样品,而ΔE= -0.0035±0.0011eV是对于健康的仓鼠。这些结果表明,H 2 O分子之间的?E H ... O值发生了重组,DNES谱中的局部极值在统计学上可靠地增加了。在(-0.1212)eV处获得局部极值,这是抗炎作用的指标。在(-0.1387)eV处获得了另一个局部极值,这是在分子水平上抑制肿瘤细胞发育的指标。展示了果蝇的影响-抗炎,抗氧化和抑制癌症发展。本文介绍了对果蝇属的影响的基本生物物理,生化和生物学过程。作者正在研究它们的物理化学特性以及对仓鼠生物的生物物理和生物学影响。 Toshkova的另一项研究表明,受果蝇(Drossinakis)影响的仓鼠寿命得以延长。

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