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首页> 外文期刊>Biomedical Engineering: Applications, Basis and Communications >HUMAN GASTROINTESTINAL DATA ANALYSIS BASED ON WAVELET TRANSFORM-FRACTAL ALGORITHM CHARACTERIZED BY WIRELESS CAPSULE
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HUMAN GASTROINTESTINAL DATA ANALYSIS BASED ON WAVELET TRANSFORM-FRACTAL ALGORITHM CHARACTERIZED BY WIRELESS CAPSULE

机译:基于无线胶囊表征的小波变换-分形算法的人体胃肠道数据分析

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摘要

Background: Gastrointestinal tract pressure information can reflect the dynamic disorder of gastrointestinal tract physiological and pathological changes, which is important in early diagnosis and treatment of gastrointestinal diseases. However, the rule of human gastrointestinal activities under his normal state is still not clear. The purpose of this paper is to find some rules of gastrointestinal activities using wavelet transform-fractal algorithm and provides a reference for the diagnosis of gastrointestinal disease. Methods: Data from 16 healthy subjects (13 men and three women) aged 18-35 years were analyzed. The key challenges on the data processing were filtering, features extraction, information evaluation and providing the reference conclusion which were resolved by employing wavelet decomposition, fractal algorithm etc. Key Results: About 94% of the subjects gastrointestinal activities follow the rule that the colonic activities in the digestive period are the roughest with the largest box dimension, closely followed by small intestinal activities with gastric activities ranking third with the smallest box dimension, which is never revealed before. Moreover, for the same person the gastrointestinal activities in the digestive period are rougher than in the inter- digestive period, as the box dimension of gastrointestinal activities in the digestive period is larger than in the inter- digestive period. Conclusions and Inferences: The results show that the wavelet transform-fractal algorithm provides a new way to research human gastrointestinal activities.
机译:背景:胃肠道压力信息可以反映胃肠道动态变化的生理和病理变化,对胃肠疾病的早期诊断和治疗具有重要意义。但是,在他的正常状态下人体胃肠活动的规律尚不清楚。本文的目的是利用小波变换分形算法寻找胃肠道活动的一些规律,为胃肠道疾病的诊断提供参考。方法:对年龄在18-35岁的16位健康受试者(13位男性和3位女性)的数据进行了分析。数据处理中的主要挑战是过滤,特征提取,信息评估和提供参考结论,这些挑战可通过小波分解,分形算法等解决。关键结果:约94%的受试者胃肠道活动遵循结肠活动规则消化阶段中最粗的动物具有最大的盒子尺寸,紧随其后的是小肠活动,而胃部活动则以最小的盒子尺寸排名第三,这是以前从未发现过的。而且,对于同一人,由于消化期间胃肠活动的盒子尺寸大于消化期间,因此消化期间的胃肠活动比消化间的粗糙。结论与结论:结果表明,小波变换分形算法为研究人体胃肠道活动提供了一种新途径。

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