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The Framework of a Mathematical Model of the Autonomic Nervous System and Physiological Systems: Using the Neuroregulation of Blood Glucose as an Example

机译:自主神经系统和生理系统数学模型的框架:以血糖的神经调节为例

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摘要

Despite the immense advances of medical research there remains a fundamental theoretical deficit regarding how the body is able to maintain its physiological stability. In other words, what is the mechanism which regulates homeostasis and allostasis and/or what is the relationship between genotype and the influence of the environment (phenotype)? Despite the immense amount of publicity given to the huge increases in the occurrence of the most common lifestyle related ailments (e.g. diabetes, obesity, cardiovascular disease, cancers, Alzheimer’s disease, etc) which have occurred in recent years; most people in the world still have relatively normal levels of body weight and remain free from medical problems during their lifetimes, at least until their advancing years when their body is increasingly less able to maintain its normal regulated function. This article considers whether it is now possible to understand the nature, structure and function of this regulatory mechanism in far more detail than has hitherto been possible. This neuroregulatory mechanism involves the influence of light upon brain function and hence upon the autonomic nervous system and physiological systems. There is a particular emphasis in this article upon the regulation of Blood Glucose and how Acidity plays a significant role in diabetes etiology. Finally, the article introduces a Mathematical Model of the Autonomic Nervous System and/or the Physiological Systems (developed by Dr IG Grakov) which has been incorporated into a commercialised technology which is based upon the concepts outlined.
机译:尽管医学研究取得了巨大的进步,但是关于身体如何保持其生理稳定性仍然存在根本的理论缺陷。换句话说,调节体内稳态和体内稳态的机制是什么,和/或基因型与环境影响(表型)之间的关系是什么?尽管近年来发生的与生活方式有关的最常见疾病(例如糖尿病,肥胖症,心血管疾病,癌症,阿尔茨海默氏病等)的发生大量增加,已经引起了广泛的关注;世界上大多数人的一生中仍然具有相对正常的体重水平,并且在至少一生中,直到其身体越来越无法维持其正常调节功能的那一刻,一直没有医疗问题。本文考虑的是,现在是否有可能比迄今更详细地了解这种调节机制的性质,结构和功能。这种神经调节机制涉及光对脑功能的影响,因此对植物神经系统和生理系统的影响。本文特别强调血糖的调节以及酸度如何在糖尿病病因中起重要作用。最后,本文介绍了自主神经系统和/或生理系统的数学模型(由IG Grakov博士开发),该模型已基于概述的概念纳​​入了商业化技术中。

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