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A gravitational hypothesis of essential hypertension as a natural adaptation to increased gravitational stress caused by regular, prolonged sitting typical of modern life

机译:原发性高血压的引力假说是对现代生活中经常出现的有规律的长时间坐所引起的引力压力的自然适应

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Background:Spaceflight studies have demonstrated that adaptation to increased gravitational stress after prolonged microgravity includes sympathetic activation, water retention, and arterial pressure increase, i.e. is very similar to essential hypertension, which looks like an advanced stage of adaptation to a further increase in gravitational stress.Material/Methods: Theoretical analysis and literature review were performed to develop an hypothesis of essential hypertension as adaptation to increased gravitational stress associated with prolonged sitting.Results: Gravitation shifts blood downwards, and gravitational stress (GS) on the cardiovascular system in an upright position may be defined as the amount of work necessary to return the blood upwards and maintain adequate upper-body circulation calculated as the product of the gravitational potential (Ugr=g*h) and the mass of blood moved: GS =Ugr*Mshift. In a complex vascular network, this blood shift is actually a function of time, estimated in a first approximation as Mshift(t)=(Ugr*t)/Rd (Rd: the resistance to downward blood flow). Thus, gravitational stress is proportional to the time spent upright GS=Ugr*Mshift(t)=(Ugr2*t)/Rd=(g2*h2*t)/Rd. From this analysis, regular, prolonged sitting typical of modern life should cause a significant increase in gravitational stress on the cardiovascular system, requiring advanced antigravitational response with sympathetic hyperactivity, vasoconstriction, volume overload, and arterial hypertension. The hypertensive effect of prolonged sitting has been demonstrated in clinical studies.Conclusions: Essential hypertension may be explained as adaptation to increased gravitational stress caused by regular, prolonged sitting. This gravitational hypothesis of essential hypertension, supported by clinical data, offers a way to its complete healing through elimination of the primary factor of prolonged sitting.
机译:背景:航天研究表明,长时间微重力作用下,对重力增加的适应包括交感神经激活,保水和动脉压升高,即与原发性高血压非常相似,这似乎是适应重力进一步增加的晚期阶段。材料/方法:进行了理论分析和文献综述,以提出原发性高血压的假设,以适应因长时间坐着而增加的重力压力。结果:重力使血液向下移动,而心血管系统的重力压力(GS)直立位置可以定义为使血液向上回流并维持足够的上身循环所需的功的量,该功的量是由重力(Ugr = g * h)和运动的血液质量的乘积计算的:GS = Ugr * Mshift。在复杂的血管网络中,这种血液移动实际上是时间的函数,以一阶近似值估算为Mshift(t)=(Ugr * t)/ Rd(Rd:对向下血流的阻力)。因此,重力应力与直立花费的时间成比例GS = Ugr * Mshift(t)=(Ugr2 * t)/ Rd =(g2 * h2 * t)/ Rd。通过这种分析,现代人通常规律的长时间坐着会导致心血管系统的重力压力显着增加,从而需要先进的抗重力反应,包括交感神经过度活跃,血管收缩,容量超负荷和动脉高压。在临床研究中已经证明了长时间坐着的高血压效果。结论:原发性高血压可以解释为对长期规律坐着引起的重力压力的适应。原发性高血压的这种引力假说得到了临床数据的支持,为消除长时间坐着的主要因素提供了一种完全康复的方法。

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