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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Spectral composition of heart sounds before and after mechanical heart valve implantation using a modified forward-backward Prony's method
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Spectral composition of heart sounds before and after mechanical heart valve implantation using a modified forward-backward Prony's method

机译:使用改进的前后Prony方法在机械心脏瓣膜植入前后的心音频谱组成

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This paper investigates the impact of the lung-thorax and heart-valve system on the overall spectral composition of the externally recorded heart sounds. The study concentrates on the case of the first and the second heart sounds for normal patients and patients before and after implantation of a mechanical valve in the mitral or aortic position. The analysis is performed using a modified forward-backward overdetermined Prony's method (MFBPM) which uses a forward-backward mean filter and a modified procedure for estimating the position of the signal poles. In terms of the normalized cross-correlation coefficient, this method has an average modeling accuracy of 99.62% for representing the first and second heart sounds and an average least square time-domain error of 0.43%. Results obtained from 40 subjects show that the condition of the native mitral or aortic valve affects mostly the distribution of the amplitudes of the spectral components, whereas the number of the spectral components or their respective relative energy remains more or less unchanged. It has been found that the amplitudes of frequency components in the range 120-250 Hz are more affected by abnormalities of native mitral valves. Furthermore, in the case of the second heart sound the region 250-400 Hz has been found to be more affected by abnormalities in the aortic valve. It has also been found that the mechanical prosthetic heart valve affects mostly the spectrum beyond 400 Hz. A clear difference has been observed in the frequency spectrum above 400 Hz between both normally and abnormally functioning native valves and normally functioning mechanical valves. Preliminary results in some malfunctioning cases of mechanical prosthesis suggest that spectral components beyond 400 Hz can be used to monitor the condition of these prostheses.
机译:本文研究了肺胸和心脏瓣膜系统对外部记录的心音的整体频谱组成的影响。该研究集中于正常患者以及在二尖瓣或主动脉位置植入机械瓣膜前后的患者的第一和第二心音的情况。使用改进的前后超定Prony方法(MFBPM)进行分析,该方法使用前后均值滤波器和改进的过程来估计信号极点的位置。就归一化互相关系数而言,此方法代表第一和第二种心音的平均建模精度为99.62%,平均最小平方时域误差为0.43%。从40位受试者获得的结果表明,天然二尖瓣或主动脉瓣的状况主要影响光谱分量的幅度分布,而光谱分量的数量或它们各自的相对能量或多或少保持不变。已经发现,在120-250Hz范围内的频率分量的幅度更受自然二尖瓣的异常影响。此外,在第二心音的情况下,发现250-400Hz的区域受主动脉瓣膜异常的影响更大。还已经发现,机械人工心脏瓣膜主要影响超过400Hz的频谱。在正常和异常运行的天然气门与正常运行的机械气门之间,在400 Hz以上的频谱中观察到明显的差异。在一些机械假体故障情况下的初步结果表明,超过400 Hz的频谱分量可用于监视这些假体的状况。

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