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Performing discrete fourier transform of the heart sounds on the pocket computer

机译:在袖珍计算机上对心音执行离散傅立叶变换

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The heart is one of the two significant organs for human life. Today the most important method used by the medical doctors in diagnosing the disorders in connection with the heart is listening with the stethoscope. The sounds created by the flow of the blood entering the heart and movements of the valvular connected to the flow are listened and then the abnormalities related to the heart are determined. On the other hand, the method of listening with the stethoscope has many constrains. In this study, from the heart sounds taken from the patient via electronic stethoscope digital data have been acquired, and with the discrete Fourier transform, which is one of the signal processing methods, frequency analysis has been performed, and both sound graphic and frequency spectrum have been displayed on the pocket computer. Thus, examining the frequency spectrum of the normal and abnormal heart sounds, it is thought that the differences on the frequency axis of the normal and abnormal sounds may be beneficial in diagnosing. Because unlike normal heart sounds, the diseased heart sounds taken from a patient who has any kind of heart disorder include higher frequency components. As the developed system can be operated in a mobile way, it is appropriate for the medical doctors to use it in clinical practically.
机译:心脏是人类生活中两个重要器官之一。今天,医生在诊断与心脏有关的疾病中使用的最重要的方法是用听诊器听。聆听由进入心脏的血液流动产生的声音以及与该流动相连的瓣膜的运动,然后确定与心脏有关的异常。另一方面,用听诊器听的方法有很多限制。在这项研究中,从通过电子听诊器获取的患者心音中获取了数字数据,并使用离散傅里叶变换(一种信号处理方法)进行了频率分析,并进行了声音图形和频谱分析已显示在袖珍计算机上。因此,通过检查正常和异常心音的频谱,可以认为正常和异常心音的频率轴上的差异在诊断中可能是有益的。因为与正常的心音不同,从患有任何类型的心脏病的患者那里获取的患病心音包括较高频率的成分。由于开发的系统可以通过移动方式进行操作,因此医生在临床上实际使用它是合适的。

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