Why the study?
Guidelines recommend using hs-cTn in either 0/1-h or 0/2-h algorithms to identify or rule out AMI, but few studies have directly compared them head-to-head.
Does the ESC 0/1-hour algorithm compared to the 0/2-hour algorithm improve diagnostic accuracy for acute myocardial infarction in patients presenting with acute chest pain?
Does the ESC 0/1-hour algorithm compared to the 0/2-hour algorithm improve diagnostic accuracy for acute myocardial infarction in patients presenting with acute chest pain?
Both the 0/1-h and 0/2-h ESC algorithms have excellent and comparable sensitivity and NPV for ruling out AMI, though the 0/2-h algorithm rules out slightly more patients and has a higher PPV for rule-in.
Both algorithms safely rule out AMI; supports ESC guidelines but leaves open outcome impact in prospective use.
BACKGROUND: The recent guidelines from the European Society of Cardiology recommends using high-sensitivity cardiac troponin (hs-cTn) in either 0/1-h or 0/2-h algorithms to identify or rule out acute myocardial infarction (AMI). Several studies have reported good diagnostic accuracy with both algorithms, but few have compared the algorithms directly. OBJECTIVE: We aimed to compare the diagnostic accuracy of the algorithms head-to-head, in the same patients. METHODS: This was a secondary analysis of data from a prospective observational study; 1167 consecutive patients presenting with chest pain to the emergency department at Skåne University Hospital (Lund, Sweden) were enrolled. Only patients with a hs-cTnT sample at presentation AND after 1 AND 2 h were included in the analysis. We compared sensitivity, specificity, and negative (NPV) and positive predictive value (PPV). The primary outcome was index visit AMI. RESULTS: A total of 710 patients were included, of whom 56 (7.9%) had AMI. Both algorithms had a sensitivity of 98.2% and an NPV of 99.8% for ruling out AMI, but the 0/2-h algorithm ruled out significantly more patients (69.3% vs. 66.2%, p < 0.001). For rule-in, the 0/2-h algorithm had higher PPV (73.4% vs. 65.2%) and slightly better specificity (97.4% vs. 96.3%, p = 0.016) than the 0/1-h algorithm. CONCLUSION: Both algorithms had good diagnostic accuracy, with a slight advantage for the 0/2-h algorithm. Which algorithm to implement may thus depend on practical issues such as the ability to exploit the theoretical time saved with the 0/1-h algorithm. Further studies comparing the algorithms in combination with electrocardiography, history, or risk scores are needed.
No takes yet. Share an insight, caveat, or question.
Engström et al. (2024) studied this question.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: