首页> 外文期刊>Computers in Biology and Medicine >Formulation of effects of atropine, pralidoxime and magnesium sulfate on cardiac tissue levels of nitric oxide, malondialdehyde and glutathione in organophosphate poisoning using artificial neural network.
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Formulation of effects of atropine, pralidoxime and magnesium sulfate on cardiac tissue levels of nitric oxide, malondialdehyde and glutathione in organophosphate poisoning using artificial neural network.

机译:用人工神经网络制定阿托品,普利多肟和硫酸镁对有机磷中毒心脏组织中一氧化氮,丙二醛和谷胱甘肽的影响。

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摘要

Anticholinesterase poisoning is an important health problem in our country, and a complete understanding of its underlying mechanisms is essential for the emergency physician. So, this study focused on two purposes. First one was aimed to investigate the biochemical analysis to determine the tissue levels of malondialdehyde (MDA), glutathione and nitric oxide (NO). Secondly, it was planned to model and formulate the effects of some drugs on cardiac tissues levels of NO, MDA and glutathione in acute organophosphate poisoning in rats by the application of neural network based on experimental results. It has been planned to determine whether artificial neural network (ANN) is appropriate tool to analyze and formulate it. As a result, it has been considered that ANN can be effectively used to model NO, MDA and glutathione level. The performances of ANN formulation versus target experimental values are found to be quite high. It is concluded that, proposed NN models are also presented as simple explicit mathematical functions for further use by researchers.
机译:抗胆碱酯酶中毒是我们国家的重要健康问题,对急诊医师的基本机制的全面了解至关重要。因此,本研究着重于两个目的。第一个旨在研究生化分析以确定丙二醛(MDA),谷胱甘肽和一氧化氮(NO)的组织水平。其次,根据实验结果,通过神经网络的应用,计划对某些药物对大鼠急性有机磷酸盐中毒时心脏组织中NO,MDA和谷胱甘肽水平的影响进行建模和公式化。已经计划确定人工神经网络(ANN)是否适合分析和制定它。结果,人们认为可以将ANN有效地用于模拟NO,MDA和谷胱甘肽水平。发现ANN配方相对于目标实验值的性能非常高。结论是,提出的神经网络模型也作为简单的显式数学函数呈现,供研究人员进一步使用。

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