Author
Listed:
- Jose Julio Gutiérrez
- Mikel Leturiondo
- Sofía Ruiz de Gauna
- Jesus María Ruiz
- Izaskun Azcarate
- Digna María González-Otero
- Juan Francisco Urtusagasti
- James Knox Russell
- Mohamud Ramzan Daya
Abstract
Background: Measurement of end-tidal CO2 (ETCO2) can help to monitor circulation during cardiopulmonary resuscitation (CPR). However, early detection of restoration of spontaneous circulation (ROSC) during CPR using waveform capnography remains a challenge. The aim of the study was to investigate if the assessment of ETCO2 variation during chest compression pauses could allow for ROSC detection. We hypothesized that a decay in ETCO2 during a compression pause indicates no ROSC while a constant or increasing ETCO2 indicates ROSC. Methods: We conducted a retrospective analysis of adult out-of-hospital cardiac arrest (OHCA) episodes treated by the advanced life support (ALS). Continuous chest compressions and ventilations were provided manually. Segments of capnography signal during pauses in chest compressions were selected, including at least three ventilations and with durations less than 20 s. Segments were classified as ROSC or non-ROSC according to case chart annotation and examination of the ECG and transthoracic impedance signals. The percentage variation of ETCO2 between consecutive ventilations was computed and its average value, ΔETavg, was used as a single feature to discriminate between ROSC and non-ROSC segments. Results: A total of 384 segments (130 ROSC, 254 non-ROSC) from 205 OHCA patients (30.7% female, median age 66) were analyzed. Median (IQR) duration was 16.3 (12.9,18.1) s. ΔETavg was 0.0 (-0.7, 0.9)% for ROSC segments and -11.0 (-14.1, -8.0)% for non-ROSC segments (p
Suggested Citation
Jose Julio Gutiérrez & Mikel Leturiondo & Sofía Ruiz de Gauna & Jesus María Ruiz & Izaskun Azcarate & Digna María González-Otero & Juan Francisco Urtusagasti & James Knox Russell & Mohamud Ramzan Daya, 2021.
"Assessment of the evolution of end-tidal carbon dioxide within chest compression pauses to detect restoration of spontaneous circulation,"
PLOS ONE, Public Library of Science, vol. 16(5), pages 1-13, May.
Handle:
RePEc:plo:pone00:0251511
DOI: 10.1371/journal.pone.0251511
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