Key result
Myocardial injury after noncardiac surgery (MINS) was associated with higher 30-day mortality in orthopaedic patients compared to those without MINS (9.8% vs 1.0%; OR 11.28; 95% CI 6.72-18.92).
Why the study?
Myocardial injury after noncardiac surgery is common and prognostically important, but little is known about it specifically in orthopaedic surgery.
Does myocardial injury after noncardiac surgery (MINS) increase 30-day mortality in patients ≥45 years of age undergoing orthopaedic surgery?
Cohort (n=3,092)
Yes
Does myocardial injury after noncardiac surgery (MINS) increase 30-day mortality in patients ≥45 years of age undergoing orthopaedic surgery?
Odds Ratio: 11.28 (95% CI 6.72–18.92)
Absolute Event Rate: 9.8% vs 1%
Myocardial injury after orthopaedic surgery is common (11.9%), largely asymptomatic (>80%), and strongly associated with increased 30-day mortality, supporting routine postoperative troponin monitoring.
MINS is associated with high 30-day mortality after orthopaedic surgery; hypothesis-generating for routine troponin monitoring.
BACKGROUND: Myocardial injury after noncardiac surgery (MINS) is common and of prognostic importance. Little is known about MINS in orthopaedic surgery. The diagnostic criterion for MINS was a level of ≥0.03 ng/mL on a non-high-sensitivity troponin T (TnT) assay due to myocardial ischemia. METHODS: We undertook an international, prospective study of 15,103 patients ≥45 years of age who had inpatient noncardiac surgery; 3,092 underwent orthopaedic surgery. Non-high-sensitivity TnT assays were performed on postoperative days 0, 1, 2, and 3. Among orthopaedic patients, we determined (1) the prognostic relevance of the MINS diagnostic criteria, (2) the 30-day mortality rate for those with and without MINS, and (3) the probable proportion of MINS cases that would go undetected without troponin monitoring because of a lack of an ischemic symptom. RESULTS: Three hundred and sixty-seven orthopaedic patients (11.9%) had MINS. MINS was associated independently with 30-day mortality including among those who had had orthopaedic surgery. Orthopaedic patients without and with MINS had a 30-day mortality rate of 1.0% and 9.8%, respectively (odds ratio [OR], 11.28; 95% confidence interval [CI], 6.72 to 18.92). The 30-day mortality rate was increased for patients with MINS who had an ischemic feature (i.e., symptoms, or evidence of ischemia on electrocardiography or imaging) (OR, 18.25; 95% CI, 10.06 to 33.10) and for those who did not have an ischemic feature (OR, 7.35; 95% CI, 3.37 to 16.01). The proportion of orthopaedic patients with MINS who were asymptomatic and in whom the myocardial injury would have probably gone undetected without TnT monitoring was 81.3% (95% CI, 76.3% to 85.4%). CONCLUSIONS: One in 8 orthopaedic patients in our study had MINS, and MINS was associated with a higher mortality rate regardless of symptoms. Troponin levels should be measured after surgery in at-risk patients because most MINS cases (>80%) are asymptomatic and would go undetected without routine measurements. LEVEL OF EVIDENCE: Prognostic Level II. See Instructions for Authors for a complete description of levels of evidence.
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Thomas et al. (2020) conducted a cohort in Orthopaedic surgery (n=3,092). Myocardial injury after noncardiac surgery (MINS) vs. Without MINS was evaluated on 30-day mortality (OR 11.28, 95% CI 6.72 to 18.92). Myocardial injury after noncardiac surgery (MINS) was associated with higher 30-day mortality in orthopaedic patients compared to those without MINS (9.8% vs 1.0%; OR 11.28; 95% CI 6.72-18.92).
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