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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Quantitative analysis of errors due to power-line interference and base-line drift in detection of onsets and offsets in ECG using wavelets.
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Quantitative analysis of errors due to power-line interference and base-line drift in detection of onsets and offsets in ECG using wavelets.

机译:使用小波检测ECG起始点和偏移时,由于电源线干扰和基线漂移引起的误差的定量分析。

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摘要

Timing characterisation of the ECG using wavelet transforms is a new technique in which multiscale analysis reduces the influence of noise. This technique issued to investigate the effect of noise and to estimate the errors involved in the detection of onsets and offsets of ECG waves. With appropriate choice of scales of analysis, the study shows that the errors involved in the measurement of QRS width in the presence of base-line wander are negligible. The 50 Hz power-line interference introduces a maximum error of 6.25% if it is greater than 50% of the signal amplitude. The P and T complexes are not affected by power-line interference, but the base-line wander introduces a maximum error of 9.6%. In situations with the simultaneous presence of both types of noise, the use of an optimised scale restricts the errors to within clinically acceptable limits.
机译:使用小波变换对ECG进行时序表征是一项新技术,其中多尺度分析可降低噪声的影响。这项技术的发布是为了研究噪声的影响,并估计与检测心电图波的开始和偏移有关的误差。通过选择适当的分析尺度,研究表明在基线漂移的情况下测量QRS宽度所涉及的误差可以忽略不计。如果50 Hz电力线干扰大于信号幅度的50%,则会引入6.25%的最大误差。 P和T复合物不受电力线干扰的影响,但是基线漂移会引入9.6%的最大误差。在同时存在两种类型的噪声的情况下,使用优化的标度会将误差限制在临床可接受的范围内。

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