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An Approach of Ion Selective Electrode for Human Body, Cells and Biomedical Researches

机译:一种用于人体,细胞和生物医学研究的离子选择性电极的方法

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Basically this study shows the use of Ion Selective Electrodes for the study of cells, blood and other human body parts and also in other biomedical researches. Because we know that body cell content different type of nutrient elements such as Amino acid, phosphorous etc., blood contains iron, haemoglobin, sodium etc. So the elements in the cells, blood and other parts of human body can be determine individually by using the ion selective electrode because ion selective electrode respond to a particular ion or element. In ion selective electrode method Nernst Equation is generally used. This method works as a new technology for sensing the selective element in suitable manner within a specified limit. In biomedical researches ion selective electrode can be used for DNA, RNA study purpose because DNA and RNA are the nuclear acids and these acids can be analysed by using ion selective electrode method. Ion selective electrode method works on the potentiometric behaviour and linear regression model. Linear regression model is made by using the Nernst equation with the help of least square method. In this method there are many potentiometric calculations are performed and finally their mean is used as result for the concentration of elemental analysis. Generally ion selective electrode has wide range of operation for 5×10-5 mol/l. to 1×10-1 mol/l.
机译:基本上,这项研究显示了细胞,血液和其他人体器官的研究,而且在其他生物医学研究使用离子选择性电极。因为我们知道,体细胞含量不同类型的营养元素如氨基酸,磷等的,血液中含有铁,血红蛋白,钠等,所以在细胞,血液中的元素和人体的其它部分可以通过使用单独地确定离子选择性电极,因为一个特定的离子或元素离子选择性电极响应。在离子选择电极法Nernst方程通常使用。该方法可以作为一个新技术用于一个指定的限制内感测以合适的方式选择性元件。在生物医学研究离子选择性电极,可用于DNA,RNA研究目的,因为DNA和RNA是核酸和这些酸可以通过使用离子选择性电极法进行分析。离子选择性电极法的工作原理的电位行为和线性回归模型。线性回归模型是通过使用Nernst方程用最小二乘法的帮助下作出。在这种方法中有许多电位执行计算,最后他们的平均值作为结果进行元素分析的浓度。通常离子选择性电极具有宽范围的操作为5×10-5摩尔/升。至1×10-1摩尔/升。

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