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Synapse
July 9, 2004117 citations

Reduction of motion artifacts from photoplethysmographic recordings using a wavelet denoising approach

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CLC.M. LeeYZYuan‐Ting Zhang

Key Result

A wavelet-based denoising approach significantly reduced heart rate and heart rate variability estimation errors caused by vertical and circular motion artifacts.

Structured PICO

Does a wavelet-based denoising method reduce HR and HRV estimation errors caused by motion artifacts in photoplethysmographic recordings?

P
Population
Photoplethysmographic signals obtained at fingertip during vertical and circular motions
I
Intervention
Wavelet-based denoising method
C
Comparator
Reference signals acquired at the other hand as a standard
O
Outcome
Heart rate (HR) and heart rate variability (HRV) estimation errorsurrogate

A wavelet-based denoising approach significantly reduces heart rate and heart rate variability estimation errors caused by motion artifacts in photoplethysmography.

Abstract

In this work, the effects of motion artifacts on photoplethysmographic signals obtained at fingertip was evaluated. A wavelet-based method was proposed to reduce the influence of motion artifacts on heart rate (HR) and heart rate variability (HRV) estimation. Two kinds of motions were investigated - vertical and circular motions. During the motion, reference signals were acquired at other hand as a standard. Results show that the HR and HRV estimation error can be reduced significantly.

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Cite This Study

Lee et al. (2004) studied Motion artifacts in photoplethysmographic signals. Wavelet denoising approach vs. Reference signals acquired at other hand was evaluated on Heart rate (HR) and heart rate variability (HRV) estimation error. A wavelet-based denoising approach significantly reduced heart rate and heart rate variability estimation errors caused by vertical and circular motion artifacts.

synapsesocial.com/papers/6a180d7256b3e2ada412e029https://doi.org/10.1109/apbme.2003.1302650
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Development of real-time motion artifact reduction algorithm for a wearable photoplethysmography2007 · 103 citations
  2. 2Combining Nonlinear Adaptive Filtering and Signal Decomposition for Motion Artifact Removal in Wearable Photoplethysmography2016 · 97 citations
  3. 3Motion Artifact Reduction in Photoplethysmography Using Independent Component Analysis2006 · 398 citations
  4. 4Motion Artifact Removal in Ambulatory ECG Signal for Heart Rate Variability Analysis2019 · 75 citations
  5. 5Motion Artifact Reduction in Wearable Photoplethysmography Based on Multi-Channel Sensors with Multiple Wavelengths2020 · 142 citations