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Application of Dynamic Thermogram for Diagnosis of Hypertension

机译:动态温度图在高血压诊断中的应用

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Hypertension (high blood pressure) is blood pressure above than 140 over 90 mmHg (millimeters of mercury). Diagnosis of hypertension is made when one of the above readings is high. By the year 2025, the number of people living with hypertension is about 1.56 billion all over the world. This paper aims at developing a technique to diagnose hypertension noninvasively without using the cuff. In this approach, the dynamic infrared (IR) thermogram of selected body regions like hand (left and right) and neck (left and right) is obtained for about 60 s using IR thermal camera from 50 subjects (normal = 25 and age and sex-matched hypertensive = 25). The average temperature for every millisecond in these selected body regions is measured using ResearchIR software. Correlation is performed between the features extracted from dynamic thermogram and flow rate obtained from carotid Doppler ultrasound scan. The statistical analysis shows that highest correlation is obtained between the rate of temperature change (°C/min) in the neck left side with systolic pressure and hand left side with diastolic pressure (mmHg) (Pearson correlation r = -0.637 and 0.668 with p < 0.01, respectively). There also exists a linear correlation coefficient between neck right rate of change in temperature (°C/min) and right carotid artery flow rate (r = -0.358 with p < 0.05). An automated classifier using SVM network was designed with features extracted from dynamic thermogram for diagnosis of hypertension. The accuracy of the classifier was about 80% with sensitivity and specificity values 76.9 and 83.3%, respectively. The accuracy of the classifier when all the correlated features (« = 17) were included was 93% (sensitivity 90% and specificity 94%), whereas when highly correlated features (n = 15) were alone included, the sensitivity improved to 94% (accuracy 90% and specificity 85%).
机译:高血压(高血压)是指90毫米汞柱(毫米汞柱)以上的血压超过140。当上述读数之一高时,将诊断为高血压。到2025年,全世界的高血压患者总数约为15.6亿。本文旨在开发一种无需使用袖带即可无创诊断高血压的技术。通过这种方法,使用红外热像仪从50位受试者(正常年龄= 25岁,年龄和性别)中获取了大约60 s的选定身体区域(如手(左右手)和脖子(左右手))的动态红外(IR)温度记录图。匹配的高血压= 25)。使用ResearchIR软件测量这些选定身体区域中每毫秒的平均温度。从动态温度记录图提取的特征与从颈动脉多普勒超声扫描获得的流速之间进行关联。统计分析表明,在左侧左侧收缩压的温度变化率(°C / min)和左侧左侧舒张压(mmHg)的温度变化率之间具有最高的相关性(Pearson相关性r = -0.637和0.668,对于p分别<0.01)。颈部右侧温度变化率(°C / min)和右侧颈动脉流速之间也存在线性相关系数(r = -0.358,p <0.05)。设计了使用SVM网络的自动分类器,并从动态温度记录图中提取了特征,用于诊断高血压。分类器的准确度约为80%,灵敏度和特异性值分别为76.9和83.3%。当包括所有相关特征(«= 17)时,分类器的准确性为93%(灵敏度为90%,特异性为94%),而当单独包括高度相关特征(n = 15)时,灵敏度提高到94% (准确度为90%,特异性为85%)。

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