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Variation in coronary angiography use in Out-of-Hospital cardiac arrest
Vijay Agusala1, Patrick Dale1, Rohan Khera2
1University of Texas Southwestern Medical Center, Dallas, TX, United States.
Insights
Early coronary angiography (CAG) use in out-of-hospital cardiac arrest (OHCA) survivors varies significantly by initial rhythm and ST-elevation. This highlights uncertainty in the perceived benefit of early CAG for OHCA patients.
Area of Science:
- Cardiology
- Emergency Medicine
- Clinical Research
Background:
- Early coronary angiography (CAG) in out-of-hospital cardiac arrest (OHCA) patients has conflicting evidence regarding its benefits.
- Real-world utilization patterns of CAG in OHCA patients remain underexplored.
Purpose of the Study:
- To analyze the real-world patterns and variations in early coronary angiography (CAG) utilization among out-of-hospital cardiac arrest (OHCA) survivors.
- To investigate the association between initial arrest characteristics (rhythm, ST-elevation) and CAG rates.
Main Methods:
- Utilized data from the Resuscitation Outcomes Consortium's Continuous Chest Compressions (CCC) trial.
- Stratified 5,608 OHCA survivors by initial arrest rhythm and ST-elevation on post-resuscitation ECG.
- Examined CAG rates across different trial clusters and patient subgroups.
Main Results:
- Overall, 26% of OHCA survivors underwent CAG.
- Patients with ST-elevation (70%) and shockable rhythms (28%) received CAG significantly more often than those without (31% and 5%, respectively).
- Marked variation in CAG frequency (4%-41%) was observed across trial clusters, with greater variability in ST-elevation and shockable rhythm subgroups.
Conclusions:
- Significant variation in early coronary angiography use exists among OHCA patients nationally.
- This variability underscores the ongoing uncertainty regarding the perceived benefits of early CAG in this patient population.
Introduction:
Multiple studies have examined the association of early coronary angiography (CAG) among out-of-hospital cardiac arrest (OHCA) patients with conflicting results. However, patterns of use of CAG among OHCA patients in real-world settings are not well-described.
Methods:
Utilizing data from the Resuscitation Outcomes Consortium's Continuous Chest Compressions trial for our analysis, we stratified patients based on initial arrest rhythm and ST-elevation on initial post-resuscitation electrocardiogram (ECG) and examined the rates of CAG in resuscitated patients. We also examined the rates of CAG across different trial clusters in the overall study population as well as in pre-specified patient subgroups RESULTS: Of 26,148 patients in the CCC trial, 5,608 survived to hospital admission and were enrolled in the study. Among them, 26 % underwent CAG. Patients with ST-elevation underwent CAG at a significantly higher rate than patients presenting without ST-elevation (70 % vs 31 %, p < 0.001). Similarly, patients presenting with shockable rhythms underwent CAG more frequently compared with patients with non-shockable rhythms (28 % vs 5 %, p < 0.001). There was marked variation in CAG frequency across different trial clusters with the proportion of patients within a trial cluster receiving CAG ranging from 4 % - 41 %. The proportion varied more among patients with ST-elevation (16 % - 82 %) or initial shockable rhythm (11 % - 75 %) compared with no ST-elevation (2 % - 28 %) or initial non-shockable rhythm (0 % - 19 %).
Conclusion:
Among a national cohort of OHCA patients, large variation in the use of CAG exists, highlighting the existing uncertainty regarding perceived benefit from early CAG in OHCA.
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