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激光多普勒血流仪信号的相关性分析:一种评估糖尿病微循环变化的潜在非侵入性工具。

Correlation analysis of laser Doppler flowmetry signals: a potential non-invasive tool to assess microcirculatory changes in diabetes mellitus.

作者信息

Lal Cerine, Unni Sujatha Narayanan

机构信息

Biophotonics Lab, Department of Applied Mechanics, Indian Institute of Technology Madras, Chennai, 600036, India.

出版信息

Med Biol Eng Comput. 2015 Jun;53(6):557-66. doi: 10.1007/s11517-015-1266-y. Epub 2015 Mar 10.

Abstract

Measurement and analysis of microcirculation is vital in assessing local and systemic tissue health. Changes in microvascular perfusion if detected can provide information on the development of various related diseases. Laser Doppler blood flowmetry (LDF) provides a non-invasive real-time measurement of cutaneous blood perfusion. LDF signals possess fractal nature that represents the correlation in the successive signal elements. Changes in the correlation of flow and its associated parameters could be used as a tool in differentiating the ailments at different stages or assessing the treatment effectiveness of a particular ailment. Spectral domain analysis of LDF signals reveals five characteristic frequency peaks corresponding to local and central regulatory mechanisms of the human body, namely metabolic, neurogenic, myogenic, respiration, and heart rate. This paper investigates the changes in the fractal nature and constituent frequency bands of laser Doppler signals in diabetic and healthy control subjects acquired from the glabrous skin of the foot so as to provide an assessment of microcirculatory dynamics. As a pilot study, it was attempted on a set of healthy control and diabetic volunteers, and the obtained results indicate that fractal nature of LDF signals is less in diabetic subjects compared to the healthy control. The wavelet analysis carried out on the set of signals reveals the dynamics of blood flow which may have led to the difference in correlation results.

摘要

微循环的测量与分析对于评估局部和全身组织健康至关重要。如果检测到微血管灌注的变化,可提供有关各种相关疾病发展的信息。激光多普勒血流仪(LDF)可对皮肤血液灌注进行非侵入性实时测量。LDF信号具有分形特性,代表了连续信号元素之间的相关性。血流相关性及其相关参数的变化可作为区分不同阶段疾病或评估特定疾病治疗效果的工具。LDF信号的频谱域分析揭示了五个特征频率峰值,分别对应于人体的局部和中枢调节机制,即代谢、神经源性、肌源性、呼吸和心率。本文研究了从足部无毛皮肤获取的糖尿病患者和健康对照受试者的激光多普勒信号的分形特性和组成频段的变化,以便对微循环动力学进行评估。作为一项初步研究,对一组健康对照者和糖尿病志愿者进行了尝试,所得结果表明,与健康对照相比,糖尿病患者LDF信号的分形特性较弱。对该组信号进行的小波分析揭示了血流动力学,这可能导致了相关性结果的差异。

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