电子顺磁、核磁、γ-核磁共振、除颤在实验生物学和医学中的应用

L. Piruzyan
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引用次数: 0

摘要

目前,EPR、NMR和NGR透析治疗不同病理的突破性方法以及物理因素在许多疾病的预防和治疗中的影响机制受到关注。显然,任何病理都是在原子分子水平上开始发展的,而组织的任何形态改变都可以被检测到。我们研究了缺氧和高氧条件下肝、脾和脑FR含量的变化。在缺氧和高氧状态下,FR在各器官和组织中的浓度相等。然而,对于某些形式的白血病,这个比例是不同的。对于不同类型的白血病,应开发最适合当前病理的气体混合物。然后介绍了超高频场能量处理生物物体的方法及其性能。生物系统磁非均质性的研究为医学和科学研究提供了新的途径和一套方法。结合化疗的应用,利用EPRD、NMRD和NGRD的影响,从血液中提取阴离子和阳离子自由基,以及利用NGRD单独提取单离子,能够在新形成之前的一段时间内检测并可能治愈它们的出现。这些研究应在实验和临床两方面进行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of electronic paramagnetic, nuclear magnetic, γ-nuclear magnetic resonance, and defibrillation in experimental biology and medecine
Nowadays an attention is paid to pathbreaking approaches to the therapy of different pathologies with EPR, NMR and NGR dialysis and mechanisms of physical factors influence in prophylactics and therapy of a number of diseases. Any pathology is evidently begins its development in atomic-molecular levels earlier then any morphologic alterations in tissues can be detected. We have studied the alterations of FR content in liver, spleen and brain in hypoxia and hyperoxia conditions. Under hypoxia and hyperoxia the FR concentrations are equal in all organs and tissues. However this ratio is different for some forms of leucosis. For different leucosis types gas mixtures the most adequate for the current pathology should be developed. Then we represent the method of biologic objects treatment with the energy of super-high frequency field (SIT) and the instrument for its performance. The study of magnetic heterogeneity of biologic systems proposes the new approach and a set of methods for medical and scientific purpose. Application of combined with chemotherapy extraction of anionic and cationic radicals from bloodstream using EPRD, NMRD and NGRD influence and also the single ions separate extraction using NGRD are able to detect and perhaps to cure their appearance in a period before neoformation. These studies should be carried out experimentally and clinically.
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