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January 29, 2022Biosensors63 citationsOpen Access

A Real-Time PPG Peak Detection Method for Accurate Determination of Heart Rate during Sinus Rhythm and Cardiac Arrhythmia

DHDong HanSBSyed Khairul BasharJLJesús Lázaro

Key Result

A novel PPG peak detection algorithm provided 30% to 77% lower heart rate and interbeat interval estimation errors compared to traditional algorithms in the presence of various cardiac arrhythmias.

Structured PICO

Does a novel PPG peak detection algorithm reduce heart rate estimation errors compared to traditional algorithms in the presence of cardiac arrhythmias?

P
Population
Photoplethysmographic (PPG) signals from smartwatches (Samsung Simband, Gear S3, Galaxy Watch 3) in the presence of various cardiac rhythms including normal sinus rhythm (NSR), premature atrial contraction (PAC), premature ventricle contraction (PVC), and atrial fibrillation (AF)
I
Intervention
Novel PPG peak detection algorithm using a sequential series of algorithms and a Poincaré plot scheme
C
Comparator
Seven traditional peak detection algorithms known to be accurate for NSR
O
Outcome
Heart rate and interbeat interval estimation errorssurrogate

A novel PPG peak detection algorithm significantly improves heart rate estimation accuracy from smartwatch data in the presence of arrhythmias like AF, PAC, and PVC compared to traditional algorithms.

Abstract

OBJECTIVE: We have developed a peak detection algorithm for accurate determination of heart rate, using photoplethysmographic (PPG) signals from a smartwatch, even in the presence of various cardiac rhythms, including normal sinus rhythm (NSR), premature atrial contraction (PAC), premature ventricle contraction (PVC), and atrial fibrillation (AF). Given the clinical need for accurate heart rate estimation in patients with AF, we developed a novel approach that reduces heart rate estimation errors when compared to peak detection algorithms designed for NSR. METHODS: Our peak detection method is composed of a sequential series of algorithms that are combined to discriminate the various arrhythmias described above. Moreover, a novel Poincaré plot scheme is used to discriminate between basal heart rate AF and rapid ventricular response (RVR) AF, and to differentiate PAC/PVC from NSR and AF. Training of the algorithm was performed only with Samsung Simband smartwatch data, whereas independent testing data which had more samples than did the training data were obtained from Samsung's Gear S3 and Galaxy Watch 3. RESULTS: The new PPG peak detection algorithm provides significantly lower average heart rate and interbeat interval beat-to-beat estimation errors-30% and 66% lower-and mean heart rate and mean interbeat interval estimation errors-60% and 77% lower-when compared to the best of the seven other traditional peak detection algorithms that are known to be accurate for NSR. Our new PPG peak detection algorithm was the overall best performers for other arrhythmias. CONCLUSION: The proposed method for PPG peak detection automatically detects and discriminates between various arrhythmias among different waveforms of PPG data, delivers significantly lower heart rate estimation errors for participants with AF, and reduces the number of false negative peaks. SIGNIFICANCE: By enabling accurate determination of heart rate despite the presence of AF with rapid ventricular response or PAC/PVCs, we enable clinicians to make more accurate recommendations for heart rate control from PPG data.

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Cite This Study

Han et al. (2022) studied Cardiac arrhythmias (AF, PAC, PVC) and normal sinus rhythm. Novel PPG peak detection algorithm vs. Seven traditional peak detection algorithms was evaluated on Heart rate and interbeat interval estimation errors. A novel PPG peak detection algorithm provided 30% to 77% lower heart rate and interbeat interval estimation errors compared to traditional algorithms in the presence of various cardiac arrhythmias.

synapsesocial.com/papers/6a0e500f6819525e26e78987https://doi.org/10.3390/bios12020082
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Also Consider

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

  1. 1Tachycardia-Induced Change of Atrial Refractory Period in Humans1998 · 161 citations
  2. 22014 AHA/ACC/HRS Guideline for the Management of Patients With Atrial Fibrillation2014 · 7,151 citations
  3. 3Arrhythmia Discrimination using a Smart Phone2015 · 79 citations
  4. 4Estimation of Respiratory Rate From Photoplethysmogram Data Using Time–Frequency Spectral Estimation2009 · 210 citations
  5. 5Heart rate variability: standards of measurement, physiological interpretation and clinical use. Task Force of the European Society of Cardiology and the North American Society of Pacing and Electrophysiology.1996 · 5,010 citations