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一种应用于光电容积脉搏波的去除基线漂移的新型AMARS技术。

A Novel AMARS Technique for Baseline Wander Removal Applied to Photoplethysmogram.

作者信息

Timimi Ammar A K, Ali M A Mohd, Chellappan K

出版信息

IEEE Trans Biomed Circuits Syst. 2017 Jun;11(3):627-639. doi: 10.1109/TBCAS.2017.2649940. Epub 2017 May 19.

Abstract

A new digital filter, AMARS (aligning minima of alternating random signal) has been derived using trigonometry to regulate signal pulsations inline. The pulses are randomly presented in continuous signals comprising frequency band lower than the signal's mean rate. Frequency selective filters are conventionally employed to reject frequencies undesired by specific applications. However, these conventional filters only reduce the effects of the rejected range producing a signal superimposed by some baseline wander (BW). In this work, filters of different ranges and techniques were independently configured to preprocess a photoplethysmogram, an optical biosignal of blood volume dynamics, producing wave shapes with several BWs. The AMARS application effectively removed the encountered BWs to assemble similarly aligned trends. The removal implementation was found repeatable in both ear and finger photoplethysmograms, emphasizing the importance of BW removal in biosignal processing in retaining its structural, functional and physiological properties. We also believe that AMARS may be relevant to other biological and continuous signals modulated by similar types of baseline volatility.

摘要

一种新的数字滤波器——AMARS(交替随机信号最小值对齐)已通过三角学推导得出,用于在线调节信号脉动。脉冲随机出现在包含低于信号平均速率的频段的连续信号中。传统上使用频率选择滤波器来抑制特定应用不需要的频率。然而,这些传统滤波器只会降低被抑制范围的影响,产生叠加有一些基线漂移(BW)的信号。在这项工作中,不同范围和技术的滤波器被独立配置,以预处理光电容积脉搏波图(一种反映血容量动态的光学生物信号),产生带有多个基线漂移的波形。AMARS的应用有效地消除了遇到的基线漂移,以汇集相似对齐的趋势。在耳部和手指光电容积脉搏波图中都发现去除操作具有可重复性,这强调了在生物信号处理中去除基线漂移对于保留其结构、功能和生理特性的重要性。我们还认为,AMARS可能与受类似类型基线波动调制的其他生物和连续信号相关。

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