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ECG to Individual Identification

机译:ECG给个人识别

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摘要

This paper presents an individual identification system using single lead electrocardiogram (ECG). The proposed techniques for P and T wave delineation are based on time derivative and adaptive thresholding. The performance of proposed delineators is evaluated on manually annotated Physionet QT database. The accuracy of delineators are quantified on mean error and standard deviation of differences between manually annotations and automated results. Especially, lower values of error in standard deviation for onset and offset of P wave fiducials are obtained as 8.1 and 6.29 while for T wave fiducials are 9.4 and 11.2 (where units are in ms). It shows the performance of P and T wave delineators is optimum and also stable in comparison to other published results. Found fiducials are processed for the extraction of heartbeat features. From each heartbeat, 19 stable features related to interval, amplitude and angle are computed. The feasibility of ECG as a new biometric is tested on proposed identification system designed on template matching and adaptive thresholding. The accuracy of identification system is achieved to 99% on the datasize of 125 recordings prepared from 25 individual ECG of Physionet.
机译:本文介绍了使用单引灯心电图(ECG)的个别识别系统。用于P和T波描绘的所提出的技术基于时间衍生和自适应阈值化。在手动注释的PhysoIoneT Qt数据库中评估所提出的描绘器的性能。描绘器的准确性在手动注释和自动化结果之间的平均误差和标准偏差上量化。特别地,获得了P波基准线的起始和偏移的标准偏差中的误差值为8.1和6.29,而T波基准是9.4和11.2(其中单位在MS中)。它显示P和T波描边的性能与其他公开的结果相比,P和T波描绘件的性能是最佳的,也是稳定的。发现基准的是为了提取心跳特征。从每个心跳,计算与间隔,幅度和角度相关的19个稳定的特征。在模板匹配和自适应阈值下设计的建议识别系统上测试了ECG作为新生物识别的可行性。识别系统的准确性达到了从25个单独的地质ECG制备的125次录像的数据化99%。

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