首页> 外文期刊>Journal of medical systems >Design of a Biorthogonal Wavelet Transform Based R-Peak Detection and Data Compression Scheme for Implantable Cardiac Pacemaker Systems
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Design of a Biorthogonal Wavelet Transform Based R-Peak Detection and Data Compression Scheme for Implantable Cardiac Pacemaker Systems

机译:基于Biorthogonal小波变换的植入心脏起搏器系统的R峰值检测和数据压缩方案的设计

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摘要

Bradycardia can be modulated using the cardiac pacemaker, an implantable medical device which sets and balances the patient's cardiac health. The device has been widely used to detect and monitor the patient's heart rate. The data collected hence has the highest authenticity assurance and is convenient for further electric stimulation. In the pacemaker, ECG detector is one of the most important element. The device is available in its new digital form, which is more efficient and accurate in performance with the added advantage of economical power consumption platform. In this work, a joint algorithm based on biorthogonal wavelet transform and run-length encoding (RLE) is proposed for QRS complex detection of the ECG signal and compressing the detected ECG data. Biorthogonal wavelet transform of the input ECG signal is first calculated using a modified demand based filter bank architecture which consists of a series combination of three lowpass filters with a highpass filter. Lowpass and highpass filters are realized using a linear phase structure which reduces the hardware cost of the proposed design approximately by 50%. Then, the location of the R-peak is found by comparing the denoised ECG signal with the threshold value. The proposed R-peak detector achieves the highest sensitivity and positive predictivity of 99.75 and 99.98 respectively with the MIT-BIH arrhythmia database. Also, the proposed R-peak detector achieves a comparatively low data error rate (DER) of 0.002. The use of RLE for the compression of detected ECG data achieves a higher compression ratio (CR) of 17.1. To justify the effectiveness of the proposed algorithm, the results have been compared with the existing methods, like Huffman coding/simple predictor, Huffman coding/adaptive, and slope predictor/fixed length packaging.
机译:可以使用心脏起搏器,一种可植入的医疗装置进行调制,该设备可以设置和平衡患者的心脏健康。该装置已被广泛用于检测和监测患者的心率。因此收集的数据具有最高的真实性保证,并且方便进一步电刺激。在起搏器中,心电图探测器是最重要的元素之一。该器件以其新的数字形式提供,具有更高效和准确的性能,具有经济功耗平台的额外优势。在这项工作中,提出了一种基于Biorthogonal小波变换和运行长度编码(RLE)的联合算法,用于ECG信号的QRS复数检测并压缩检测到的ECG数据。首先使用用于基于修改的需求的滤波器组架构来计算输入ECG信号的双正交小波变换,该滤波器组架构由具有高通滤波器的三个低通滤波器的系列组合组成。利用线性相位结构实现低通和高通滤波器,其降低了大约50%的提出设计的硬件成本。然后,通过将去噪的ECG信号与阈值进行比较来找到R峰值的位置。所提出的R峰值检测器分别与MIT-BIH心律失常数据库分别实现了99.75和99.98的最高敏感性和阳性预测性。此外,所提出的R峰值检测器实现了0.002的相对低的数据误差率(DER)。 RLE用于压缩检测到的ECG数据的压缩达到17.1的更高的压缩比(CR)。为了证明所提出的算法的有效性,将结果与现有方法相比,如霍夫曼编码/简单预测器,霍夫曼编码/自适应和斜率预测器/固定长度包装。

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