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Aging is a simple deprivation syndrome driven by a quasi-programmed preventable and reversible drift of control system set points due to inappropriate organism-environment interaction

机译:老化是一种简单的剥夺综合症,其原因是由于机体与环境之间的不适当相互作用,导致控制系统设定点的准编程可预防和可逆漂移

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摘要

There are two well-known but opposing concepts of the reason for aging. The first supposes that senescence is programmed similarly to the genetic program of development from a zygote up to a mature organism. Genetically determined senile wasting is thought to be associated with the necessity to renovate the population to ensure its adaptation and survival. According to the concept of the stochastic aging (due to accumulation of occasional error and damage), there is no built-in program of aging. There is only a program of development up to the state of maturity, and then the organism should be able to maintain itself limitlessly. However, although the efficiency of repair systems is assumed to be rather high, it is less than 100%. Just this has to result in aging because of accumulation of various errors. We have continued and developed another approach that considers both programmed and stochastic concepts to be incorrect. Aging is a simple deprivation syndrome driven by preventable and even reversible drifts of control systems set points because of an inappropriate "organism-environment" interaction.
机译:关于衰老的原因有两个众所周知但相对的概念。第一个假设衰老的程序与从合子到成熟生物的遗传程序相似。遗传上确定的衰老被认为与翻新种群以确保其适应和生存的必要性有关。根据随机老化的概念(由于偶然的错误和损坏的累积),没有内置的老化程序。只有发展到成熟状态的程序,然后生物体才能无限地维持自身。但是,尽管维修系统的效率被认为是很高的,但仍不到100%。只是由于各种错误的累积而导致老化。我们继续并开发了另一种方法,该方法认为编程和随机概念都不正确。老化是一种简单的剥夺综合症,是由于不适当的“有机体-环境”相互作用而导致的控制系统设定点的可预防甚至可逆的漂移驱动的。

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