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Time-frequency analysis and laser Doppler spectrum decomposition to reveal new feature space for diagnosis of diabetes mellitus vascular complications

机译:时频分析和激光多普勒频谱分解揭示了用于诊断糖尿病血管并发症的新特征空间

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Early diagnostics of microcirculation complications is an important area for biomedical photonics application. The blood perfusion measurements are capable of identification of particular markers for diagnostics of many pathological conditions of blood microcirculation in the skin. In this work, we apply the laser Doppler flowmetry method with the ability to record and process the power spectra of registered photocurrent. This approach provides the estimation of signal amplitude distribution along with the frequencies of Doppler-broadened laser radiation and blood perfusion distribution. In this work, we investigate the blood flow in the skin by the time-frequency analysis of the recorded laser Doppler spectra. The conducted studies allowed us to propose new diagnostic criteria for the diagnosis of diabetes mellitus type 2 complications. The diagnostic parameters have been tested together with binary classifiers based on the linear discriminant analysis and demonstrated to be able to successfully distinguish the groups of volunteers of different age and patients with mic.rovascular complications.
机译:微循环并发症的早期诊断是生物医学光子学应用的重要领域。血液灌注测量能够识别用于诊断皮肤中血液微循环的许多病理状况的特定标记。在这项工作中,我们应用了激光多普勒流量计技术,该技术能够记录和处理配准光电流的功率谱。这种方法提供了信号幅度分布的估计以及多普勒增宽的激光辐射和血液灌注分布的频率。在这项工作中,我们通过对记录的激光多普勒频谱进行时频分析来研究皮肤中的血液流动。进行的研究使我们能够为诊断2型糖尿病并发症提出新的诊断标准。诊断参数已与基于线性判别分析的二元分类器一起进行了测试,并证明能够成功地区分不同年龄的志愿者组和微血管并发症患者。

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