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Practical microcontroller-based simulator of graphical heart sounds with disorders

机译:实用的基于微控制器的图形化心音紊乱模拟器

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摘要

Finding volunteer patients and/or getting ethical approval for experimental studies on human participants are generally serious problems in the field of biomedical engineering. Therefore, this paper presents a new microcontroller-based phonocardiogram (PCG) signals simulator. The developed simulator generates graphical representations of normal and three diseased heart sounds; namely mitral valve insufficiency, aortic stenosis, and ventricular septal defect. Discrete wavelet transform has been used to pre-process four heart sounds datasets, in order to denoise and decompose these PCG signals to the third approximated level. The developed PCG simulator was implemented using the Arduino Due® microcontroller. The simulated PCG signals are nearly equal to the real heart signals. Therefore, they are accepted to represent different scenarios of the heart sounds with disorders clinically. Graphical microcontroller-based heart sounds simulator has been successfully developed to support biomedical engineering education and research studies in the field of physiological signals analysis.
机译:在生物医学工程领域中,寻找志愿者患者和/或获得有关人类受试者的实验研究的伦理批准通常是严重的问题。因此,本文提出了一种新的基于微控制器的心电图(PCG)信号模拟器。开发的模拟器生成正常和三种患病心音的图形表示;即二尖瓣关闭不全,主动脉瓣狭窄和室间隔缺损。离散小波变换已被用于预处理四个心音数据集,以便将这些PCG信号降噪和分解为第三近似水平。开发的PCG模拟器是使用ArduinoDue®微控制器实现的。模拟的PCG信号几乎等于真实的心脏信号。因此,它们被接受来代表临床上具有疾病的心音的不同场景。已经成功开发了基于图形微控制器的心音模拟器,以支持生理信号分析领域中的生物医学工程教育和研究。

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