Key result
The ability of ECG signal quality indices to discriminate between artefacts and arrhythmic ECGs varies by arrhythmia type, emphasizing the need for validation with arrhythmia databases.
The performance of ECG signal quality indices in identifying artefacts varies by arrhythmia type, highlighting the need for arrhythmia-specific validation to prevent misclassification of true events as noise.
ECG SQI performance variation by arrhythmia type warrants caution in automated monitoring; leaves open arrhythmia-specific validation needs.
False and non-actionable alarms in critical care can be reduced by developing algorithms which assess the trueness of an arrhythmia alarm from a bedside monitor. Computational approaches that automatically identify artefacts in ECG signals are an important branch of physiological signal processing which tries to address this issue. Signal quality indices (SQIs) derived considering differences between artefacts which occur in ECG signals and normal QRS morphology have the potential to discriminate pathologically different arrhythmic ECG segments as artefacts. Using ECG signals from the PhysioNet/Computing in Cardiology Challenge 2015 training set, we studied previously reported ECG SQIs in the scientific literature to differentiate ECG segments with artefacts from arrhythmic ECG segments. We found that the ability of SQIs to discriminate between ECG artefacts and arrhythmic ECG varies based on arrhythmia type since the pathology of each arrhythmic ECG waveform is different. Therefore, to reduce the risk of SQIs classifying arrhythmic events as noise it is important to validate and test SQIs with databases that include arrhythmias. Arrhythmia specific SQIs may also minimize the risk of misclassifying arrhythmic events as noise.
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Daluwatte et al. (2016) studied Arrhythmia and ECG artefacts. ECG signal quality indices (SQIs) was evaluated on Discrimination between ECG artefacts and arrhythmic ECG segments. The ability of ECG signal quality indices to discriminate between artefacts and arrhythmic ECGs varies by arrhythmia type, emphasizing the need for validation with arrhythmia databases.
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