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Improved Algorithm for the Detection of Cancerous Cells Using Discrete Wavelet Transformation of Genomic Sequences

机译:基因组序列离散小波变换检测癌细胞检测的改进算法

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Background: Cancer is the leading cause of mortality in worldwide. Cancer occurs due to anomalous mutations in a cell. Precise cancer diagnosis and specific course of treatment is essential for saving human lives. Objective: The main aim is to use digital signal processing techniquesfor the detection of cancer cells. Method: A method to classify the normal and the cancerous cells using discrete wavelet transformation has been developed. Here, the Deoxyribo nucleic acid sequences have been converted into numeric sequences using electron ion interaction potential values.Then wavelet transform is obtained. The cross correlation values of the wavelet coefficients of normal and cancerous cells have been calculated. The maximum cross correlation amplitude in transformed domain is calculated in order to detect the abnormality present in the nucleotides of thecells. Results: The test has been conducted on 82 cancerous Deoxyribo nucleic acid sequences and 82 normal Deoxyribo nucleic acid sequences. Standard performance metrics have been evaluated and the values obtained are sensitivity - 98.78%, specificity - 100%, accuracy - 99.39%, Positiveprecision - 98.78% and negative precision - 100%. Conclusion: Comparing the performance metrics obtained with the methods in literature, it is found that the wavelet transformation method is better. Hence, this approach can be considered as an efficient solution for cancer detection.This method aids in early cancer detection and cancer therapeutics.
机译:背景:癌症是全世界死亡率的主要原因。由于细胞中的异常突变而发生癌症。精确的癌症诊断和特定的治疗过程对于节约人类生命至关重要。目的:主要目的是使用数字信号处理技术来检测癌细胞。方法:已经开发了一种使用离散小波变换对正常和癌细胞进行分类的方法。这里,使用电子离子相互作用值将脱氧核酸核酸序列转化为数字序列。然后获得小波变换。已经计算了正常和癌细胞的小波系数的横相关值。计算转化域中的最大互相关幅度,以检测Thecells核苷酸中存在的异常。结果:该试验已在82个癌性脱氧核酸核酸序列和82正常的脱氧核酸核酸序列中进行。已经评估了标准性能度量,并且获得的值是灵敏度 - 98.78%,特异性 - 100%,精度 - 99.39%,积极精度 - 98.78%和负面精度 - 100%。结论:将在文献中的方法获得的性能指标进行比较,发现小波变换方法更好。因此,这种方法可以被认为是癌症检测的有效解决方案。方法有助于早期癌症检测和癌症治疗方法。

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