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Application of Harmonious Analysis for Authentication of Biological Test in Chemiluminescent Researches

机译:和谐分析在化学发光研究生物鉴定中的应用

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A signal got from photomultiplier tube consists of useful and to the dark signal and fluctuation noise. It is necessary to conduct its digital treatment with the purpose of selection of useful constituent a signal. In the article a resulting signal is offered to give in a frequency form and conduct its spectral analysis on the basis of discrete Fourier transform. An author throws out suggestions to adopt the model of the explored signals as multiharmonic row with the limited number of harmonic. Since the expansion of signal is carried out, it is possible to define the particle of every spectral constituent in total power of signal and compare them to the conditional norm or certain known types of rejections of antioxidant properties of bioassays which are made on the stage of studies. Such harmonics will serve as the integral signs of classifications of the registered signal from bioassays and they are more proof comparatively with the traditional in medical practice parameters of estimation on the basis of the calculated coefficients which do not have repetition in the series of the same types measurings. The spectral correction of signal is conducted with application of rectangular spectral window with subsequent transformation him in a sentinel area.
机译:从光电倍增管得到的信号包括有用信号和暗信号以及波动噪声。为了选择信号的有用成分,有必要进行数字处理。在本文中,提供了结果信号以给出频率形式,并在离散傅立叶变换的基础上进行频谱分析。作者提出了采用探查信号模型作为谐波数量有限的多谐波行的建议。由于进行了信号的扩展,因此可以定义信号总功率中每个光谱成分的粒子,并将它们与条件标准或某些已知类型的生物测定抗氧化特性的抑制作用进行比较,该抑制作用是在检测阶段进行的。学习。此类谐波将作为生物测定中已注册信号分类的完整标志,在计算所得的系数(在相同类型的系列中没有重复)的基础上,与传统医学实践中的估计参数相比,它们更具证明力。测量。信号的光谱校正是通过应用矩形光谱窗口并随后在前哨区域进行变换来进行的。

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