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Spectral Decomposition of the Flow and Characterization of the Sound Signals through Stenoses with Different Levels of Severity

机译:通过具有不同程度的严重程度的狭窄的谱分解声音信号的流量和表征

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摘要

Treatments of atherosclerosis depend on the severity of the disease at the diagnosis time. Non-invasive diagnosis techniques, capable of detecting stenosis at early stages, are essential to reduce associated costs and mortality rates. We used computational fluid dynamics and acoustics analysis to extensively investigate the sound sources arising from high-turbulent fluctuating flow through stenosis. The frequency spectral analysis and proper orthogonal decomposition unveiled the frequency contents of the fluctuations for different severities and decomposed the flow into several frequency bandwidths. Results showed that high-intensity turbulent pressure fluctuations appeared inside the stenosis for severities above 70%, concentrated at plaque surface, and immediately in the post-stenotic region. Analysis of these fluctuations with the progression of the stenosis indicated that (a) there was a distinct break frequency for each severity level, ranging from 40 to 230 Hz, (b) acoustic spatial-frequency maps demonstrated the variation of the frequency content with respect to the distance from the stenosis, and (c) high-energy, high-frequency fluctuations existed inside the stenosis only for severe cases. This information can be essential for predicting the severity level of progressive stenosis, comprehending the nature of the sound sources, and determining the location of the stenosis with respect to the point of measurements.
机译:动脉粥样硬化的治疗取决于诊断时间疾病的严重程度。能够在早期阶段检测狭窄的非侵入性诊断技术对于降低相关成本和死亡率至关重要。我们使用了计算流体动力学和声学分析,以广泛地研究了通过狭窄的高湍流波动流出的声源。频谱分析和适当的正交分解推出不同严重性的波动的频率内容,并将流程分解成几个频率带宽。结果表明,高强度湍流波动在70%以上的狭窄内出现,浓缩在斑块表面,并立即在后狭窄区域。随着狭窄的进展的分析表明(a)每次严重性水平都有明显的断裂频率,范围为40至230Hz,(b)声空间空间型图证明了频率内容的变化从狭窄的距离,(c)高能量,在狭窄内存在严重病例的狭窄内存中存在高能量波动。该信息对于预测逐行狭窄的严重程度,理解声源的性质,以及确定狭窄的位置,以及测量点的位置是必不可少的。

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