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Biophysical approach to minor anxiety and Depressive Disorders

机译:生物物理方法治疗轻度焦虑症和抑郁症

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Anxiety and Depressive Disorders are two emerging concerns in the worldwide population being ranked respectively at the sixth and second position of the global burden of disease impacting public health. It is desirable to look for new effective strategies to cope with them bridging evidence based and personalized medicine. Bridging physics and biology living organisms can nowadays be viewed as dynamic processes sustained by a ceaseless flows of matter, energy and information within specific space-time quanta defined as morphogenetic fields. Life is a far from equilibrium process described as dissipative structure. A more dynamic approach replaced the old static concept of homeostasis and the process aimed to keep stability through dynamic changes has been recently defined as allostasis. Allostatic load represents the global effort that the system has to cope to maintain allostasis. Allostasis leads to strengthen of health potential toward salutogenesis while allostatic load leads to a decrease of health potential toward pathogenesis. Allostasis and allostaic load are in a dynamic relationship as an expression of the flow of information due to adaptive dynamics. Consequently, health and disease could be better understood as an expression of the allostasis/allostatic load dynamics. Information flows in biological system can be studied either by a chemical and molecular description either by an electromagnetic signals emission and processing approach. Indeed, electromagnetic signals are endogenously generated at different level in many cell components and supposedly play an active role in synchronizing either inner cell function at microscopic level either systemic adaptive response of organs, apparatus and whole organism. Accordingly, all adaptive responses both at microscopic and macroscopic level, either local or holistic, could be identified by their specific electromagnetic signals emission. Each adaptive pattern, being unique for any person at any time, identifies his own specific and personal electromagnetic signature including emotional patterns. A biophysical approach has been employed to treat minor anxiety and depressive disorders following previous evidences. The self-rating anxiety scale and the self-rating depression scale were used to assess the clinical pictures at baseline and after 3 months of a single biophysical procedure (Med Select 729) recorded on an aqueous solution (Nomabit Base) and self-administrated. A significant reduction of the score was reported in both anxiety (p 收起
机译:焦虑症和抑郁症是全球人口中两个新出现的问题,在全球影响公共卫生的疾病负担中,焦虑症和抑郁症分别位居第六和第二。期望寻找新的有效策略来应对它们,以桥接基于证据的个性化医学。如今,将物理和生物学联系起来的生物,可以看作是由特定的时空量子(定义为形态发生场)内不断的物质,能量和信息流所维持的动态过程。生命与被称为耗散结构的平衡过程相去甚远。一种更加动态的方法代替了稳态的旧静态概念,并且旨在通过动态变化保持稳定性的过程最近已被定义为“动态平衡”。静负荷代表了系统必须维持的整体努力。同种异体导致增强了对致称作用的健康潜力,而同素负荷导致对致病性的健康潜力的降低。由于适应性动态,同化和同化负荷处于动态关系中,作为信息流的表达。因此,可以更好地将健康和疾病理解为同种异体/恒流负荷动态的表达。可以通过化学和分子描述,或者通过电磁信号发射和处理方法,来研究生物系统中的信息流。实际上,电磁信号是在许多细胞成分的不同水平上内源性产生的,并且据信在使微观内部水平的任一内部细胞功能或器官,装置和整个生物体的系统适应性反应同步方面发挥着积极作用。因此,可以通过其特定的电磁信号发射来识别微观和宏观水平的所有自适应响应,无论是局部的还是整体的。每个人在任何时候都是唯一的自适应模式,可以识别他自己的特定和个人电磁信号,包括情绪模式。根据先前的证据,已采用生物物理方法来治疗轻度焦虑症和抑郁症。自评焦虑量表和自评抑郁量表用于评估基线时以及在水溶液(Nomabit Base)上记录并自我给药的单一生物物理程序(Med Select 729)3个月后的临床表现。据报告,两种焦虑的得分均明显降低(p收起

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