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- Kyung Sook Hong, Jae Gil Lee, Tae Yoon Kim, Jae-Myeong Lee, Hoonsung Park, Hanyoung Lee, Na Rae Yang, and Seung Min Baik.
- Division of Critical Care Medicine, Department of Surgery, Ewha Womans University Seoul Hospital, Ewha Womans University College of Medicine, Seoul, South Korea.
- Am. J. Med. Sci. 2024 Oct 30.
BackgroundThe arterial to end-tidal carbon dioxide gradient (P [a-Et] CO2) reveals the ventilation-perfusion (V/Q) status of critically ill patients. V/Q mismatch has several causes and affects the clinical outcomes of critically ill patients. We investigated the relationship between P (a-Et) CO2 and the clinical outcomes in critically ill patients.MethodsCritically ill patients (n = 1,978) on mechanical ventilation and capnography in the intensive care units of two institutions were enrolled and categorized into three groups: P (a-Et) CO2 ≤10 mmHg (low group), 10 mmHg < P (a-Et) CO2 ≤ 20 mmHg (medium group), and 20 mmHg < P (a-Et) CO2 (high group).ResultsThe Acute Physiology and Chronic Health Evaluation II score was 29.5 ± 8.1, 31.3 ± 8.2, and 33.3 ± 8.7 in the low, medium, and high groups, respectively (p < 0.001). Overall mortality rates were 25.5 %, 35.6 %, and 52.8 % in the low, medium, and high groups, respectively (p < 0.001). The odds ratio was 1.456 (95 % confidence interval [CI]: 1.117-1.897, p = 0.002) and 2.320 (95 % CI: 1.635-3.293, p < 0.001) for the medium and high groups, respectively, with the low group as a reference. The area under the receiver operating characteristic curve of P (a-Et) CO2 for overall mortality was 0.604 (p < 0.001).ConclusionsP (a-Et) CO2 is a simple, easily accessible indicator that potentially impacts patient care and outcomes as an independent marker for assessing disease severity and predicting mortality, especially in non-respiratory critical care scenarios.Copyright © 2024. Published by Elsevier Inc.
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