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Frequency analysis of shunt sounds in the arteriovenous fistula on hemodialysis patients

机译:血液透析患者动静脉瘘分流音的频率分析

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The aim of this research is to evaluate vascular access (VA) using shunt sounds. We measured the blood flow volume in the brachial artery (FV) and the resistance index (RI) by using ultrasonic diagnostic equipment, and the frequency and spectrum characteristic to the shunt sounds by using an electronic stethoscope. The subjects were fifty hemodialysis patients who had been treated with arteriovenous fistura (AVF). An electronic stethoscope was used for all the subjects to record the shunt sounds of arteriovenous anastomosis with an 8 kHz sampling frequency for 8 seconds. The digitized sound was analyzed by the Fourier transform, and every 10 Hz spectra were examined for acoustic amplitude and spectral energy distribution. Based on the ultrasonographic data, subjects FV >= 500 mL/min) and II (FV < 500 mL/min), and Groups A (RI < 0.6) and B (RI >= 0.6). Spectra distribution on frequency bands were compared between two different groups. The spectra in 41–270 Hz were significantly higher in Group I than in Group II. In Group I, the spectra in 111–160Hz were significantly higher than those in other frequency bands. In Group II, the spectra in 121–140 Hz were significantly higher than in the other frequency bands. Comparing Groups A and B, Group A showed a significantly higher spectrum in the 51–270 Hz, and in particular, the spectra of 121–160 Hz showed significantly higher compared with those of the other frequency bands. In group B, spectra of 131–140 Hz showed significantly higher compared with those of the other frequency bands. From these results, shunt sounds acquired in patients with good AVF function (FV >= 500 mL/min or RI < 0.6) were larger in the spectra of a 51–270 Hz frequency bands and were broad in the frequency domain compared with those in patients with poor AVF function (FV < 500 mL/min or RI >= 0.6). I- was found that analyzing the amplitude and frequency features of spectra in shunt sounds would be used for identifying FV and RI.
机译:这项研究的目的是使用分流音评估血管通路(VA)。我们使用超声诊断仪测量了肱动脉的血流量(FV)和阻力指数(RI),并使用电子听诊器测量了分流音的频率和频谱特性。受试者为五十名接受动静脉瘘(AVF)治​​疗的血液透析患者。所有受试者均使用电子听诊器记录动静脉吻合的分流声音,采样频率为8 kHz,持续8秒钟。通过傅立叶变换分析数字化声音,并检查每10 Hz频谱的声振幅和频谱能量分布。根据超声数据,受试者FV> = 500 mL / min)和II(FV <500 mL / min),以及A组(RI <0.6)和B组(RI> = 0.6)。比较了两个不同组之间在频带上的频谱分布。 I组的41–270 Hz频谱显着高于II组。在第一组中,在111–160Hz的频谱显着高于其他频段的频谱。在第二组中,121-140 Hz的频谱显着高于其他频带。比较A组和B组,A组在51–270 Hz中显示出明显更高的频谱,尤其是121–160 Hz的频谱显示出与其他频段相比明显更高。在B组中,131–140 Hz的频谱比其他频带的频谱显着更高。从这些结果可以看出,AVF功能良好(FV> = 500 mL / min或RI <0.6)的患者获得的分流音在51–270 Hz频带的频谱中更大,并且在频域中比分流音宽。 AVF功能差的患者(FV <500 mL / min或RI> = 0.6)。我发现分析分流声音中频谱的振幅和频率特征将被用于识别FV和RI。

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