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Stenosis Characterization and Identification for Dialysis Vascular Access

机译:透析血管通路的狭窄表征及鉴定

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Vascular access dysfunction is the leading cause of hospitalization for hemodialysis patients and accounts for the most medical costs in this patient population. Vascular access flow is commonly hindered by blood vessel narrowing (stenosis). Current screening methods involving imaging to detect stenosis are too costly for routine use at the point of care. Noninvasive, real-time screening of patients at risk of vascular access dysfunction could potentially identify high-risk patients and reduce the likelihood of emergency surgical interventions. Bruits (sounds produced by turbulent blood flow near stenoses) can be interpreted by skilled clinical staff using conventional stethoscopes. To improve the sensitivity of detection, digital analysis of blood flow sounds (phonoangiograms or PAGs) is a promising approach for classifying vascular access stenosis using non-invasive auditory recordings. Here, we demonstrate auditory and spectral features of PAGs which estimate both the location and degree of stenosis (DOS). Auditory recordings from nine stenosis phantoms with variable DOS and hemodynamic flow rate were obtained using a digital recording stethoscope and analyzed to extract classification features. Autoregressive modeling and discrete wavelet transforms were used for multi-resolution signal decomposition to produce 14 distinct features, most of which were linearly correlated with DOS. Our initial results suggest that the widely-used auditory spectral centroid is a simple way to calculate features which can estimate both the location and severity of vascular access stenosis.
机译:血管进入功能障碍是血液透析患者住院的主要原因,并占该患者人口中最医疗成本的账户。血管进入流量通常受到血管变窄(狭窄)的阻碍。涉及成像以检测狭窄的目前的筛选方法对于在护理点来常规使用的是太昂贵的。在血管存取功能障碍风险的患者的非侵入性,实时筛查可能识别高危患者,并降低急诊手术干预的可能性。使用常规听诊器可以通过技术临床工作人员解释Bresuit(湍流血流量产生的声音)。为了提高检测的灵敏度,血流声音(语音造影或PAG)的数字分析是使用非侵入性听觉录音来分类血管进入狭窄的有希望的方法。在这里,我们展示了PAG的听觉和光谱特征,其估计狭窄的位置和程度(DOS)。使用数字记录听诊器获得具有可变DOS和血液动力学流量的九个狭窄幻影的听觉记录,并分析以提取分类特征。自回归建模和离散小波变换用于多分辨率信号分解以产生14个不同的特征,其中大部分与DOS线性相关。我们的初始结果表明,广泛使用的听觉光谱质心是计算能够估算血管进入狭窄的位置和严重程度的简单方法。

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