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Electronic-Based Model of the Sensitive Type of Mycobacterium Tuberculosis

机译:基于电子基于结核分枝杆菌的敏感型模型

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Early diagnosis of Tuberculosis disease is important to prevent complicated issues from arising.The conventional techniques used to diagnose the Mycobacterium Tuberculosis have limitations such as time-consuming,invasive,tiring,labour intensive and microbiologist expert dependence.There is no electrical instrument to detect Tuberculosis automatically and no electronic circuit model for evaluating the device.This paper describes the development of an electronic circuit model of the sensitive type of Mycobacterium Tuberculosis.The model was developed by first converting the real data to gain,deriving the model equations using Regression model analysis and performing one-way ANOVA to confirm the results.Three types of model were investigated;the first order,second order and third order LC passive low pass filter circuits.It was found that the second order of LC circuit is the best model of the sensitive type of Mycobacterium Tuberculosis as it provides less than 10% discrepancy.The simulation results show that the logarithmic regression model is the best equation that demonstrates the sensitive type of Mycobacterium Tuberculosis.
机译:结核病的早期诊断对于防止出现复杂的问题是重要的。用于诊断结核分枝杆菌的常规技术具有诸如耗时,侵入性,疲劳,劳动密集型和微生物学家专家依赖性的局限性。没有电气仪器检测结核病自动且无电子电路模型用于评估设备。本文描述了敏感性结核病敏感类型的电子电路模型的开发。通过首先将真实数据转换为增益,使用回归模型分析来开发模型。并执行单向ANOVA以确认结果。调查了三阶类型的模型;第一阶,二阶和三阶LC无源低通滤波器电路。LC电路的二阶是最佳模型敏感类型的结核分枝杆菌,因为它提供了不到10%的差异。Simula结果表明,对数回归模型是表现出结核分枝杆菌敏感类型的最佳等式。

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