| Literature DB >> 34915911 |
Davide Chiumello1,2,3, Matteo Bonifazi4, Tommaso Pozzi5, Paolo Formenti4, Giuseppe Francesco Sferrazza Papa5,6, Gabriele Zuanetti5, Silvia Coppola4.
Abstract
BACKGROUND: We hypothesized that as CARDS may present different pathophysiological features than classic ARDS, the application of high levels of end-expiratory pressure is questionable. Our first aim was to investigate the effects of 5-15 cmH2O of PEEP on partitioned respiratory mechanics, gas exchange and dead space; secondly, we investigated whether respiratory system compliance and severity of hypoxemia could affect the response to PEEP on partitioned respiratory mechanics, gas exchange and dead space, dividing the population according to the median value of respiratory system compliance and oxygenation. Thirdly, we explored the effects of an additional PEEP selected according to the Empirical PEEP-FiO2 table of the EPVent-2 study on partitioned respiratory mechanics and gas exchange in a subgroup of patients.Entities:
Keywords: COVID-19; Respiratory distress syndrome; Respiratory mechanics; SARS-CoV-2; Ventilator-induced lung injury
Mesh:
Substances:
Year: 2021 PMID: 34915911 PMCID: PMC8674862 DOI: 10.1186/s13054-021-03839-4
Source DB: PubMed Journal: Crit Care ISSN: 1364-8535 Impact factor: 9.097
Respiratory mechanics and gas exchange within 5 and 15 cmH2O of PEEP
| Variables | PEEP 5 | PEEP 15 | |
|---|---|---|---|
| Plateau pressure, cmH2O | 17 ± 3 | 28 ± 3 | |
| Driving pressure, cmH2O | 12 ± 3 | 13 ± 3 | |
| Respiratory system elastance, cmH2O/L | 23 [19–27] | 24 [21–31] | |
| Lung elastance, cmH2O/L | 18 [15–22] | 19 [17–25] | |
| Chest wall elastance, cmH2O/L | 5 [3–6] | 4 [3–6] | |
| Lung stress, cmH2O | 13.1 ± 3.1 | 22.3 ± 4.0 | |
| Mechanical power, J/min | 16.7 ± 5.7 | 26.1 ± 6.4 | |
| Mechanical Power_Compliancers, J/min/(mL/cmH2O) | 0.36 [0.27–0.50] | 0.61 [0.51–0.77] | |
| PaO2, mmHg | 63 [55–76] | 84 [74–99] | |
| PaO2/FiO2, mmHg | 82 [66–138] | 127 [90–184] | |
| Right-to-left shunt, % | 47 ± 15 | 35 ± 12 | |
| PvO2, mmHg | 42 ± 7 | 47 ± 7 | |
| ScvO2, % | 74 ± 8 | 79 ± 6 | |
| Ca-vO2, mL | 2.8 [2.3–3.2] | 3.0 [2.4–3.4] | |
| PaCO2, mmHg | 48 ± 9 | 50 ± 9 | |
| Ventilatory ratio | 1.66 ± 0.39 | 1.74 ± 0.37 | |
| Estimated physiological dead space | 0.50 [0.43–0.58] | 0.52 [0.42–0.60] |
Paired T-test or Wilcoxon–Mann–Whitney test for repeated measures were performed, as appropriate. Tidal volume and respiratory rate were unchanged between the two PEEP levels. Ca-vO2: arterial–venous oxygen content difference; Compliancers: respiratory system compliance; ScvO2 central oxygen venous saturation; PvO2 mixed venous oxygen tension
Fig. 1Respiratory system, chest wall and lung elastance at 5 and 15 cmH2O of PEEP of the whole population. *p < 0.05; ns: not significant
Changes in respiratory mechanics and gas exchange at 5 and 15 cmH2O of PEEP between high and low respiratory system compliance group
| Variables | Low Crs | High Crs | |
|---|---|---|---|
| Δ15-5 Plateau pressure, cmH2O | 10 [7–12] | 11 [10–13] | |
| Δ15-5 Driving pressure, cmH2O | 0 [− 3 to 2] | 1 [0–3] | |
| Δ15-5 Respiratory system elastance, cmH2O/L | − 1 [− 5 to 4] | 2 [0–6] | |
| Δ15-5 Lung elastance, cmH2O/L | 2 [− 2 to 5] | 2 [0–5] | |
| Δ15-5 Chest wall elastance, cmH2O/L | 0 [− 2 to 2] | 0 [− 1 to 0] | |
| Δ15-5 Lung stress, cmH2O | 9 [6–11] | 9 [8–12] | |
| Δ15-5 Mechanical power, J/min | 9 [8–12] | 9 [8–11] | |
| Δ15-5 Mechanical Power_Compliancers, J/min/(mL/cmH2O) | 0.26 [0.12–0.40] | 0.23 [0.16–0.35] | |
| Δ15-5 PaO2, mmHg | 20 [13–38] | 20 [6–30] | |
| Δ15-5 PaO2/FiO2, mmHg | 28 [16–51] | 30 [10–50] | |
| Δ15-5 Right-to-left shunt, % | − 12 [− 23 to − 1] | − 9 [− 18 to − 5] | |
| Δ15-5 PvO2, mmHg | 4.0 [2.3–8.8] | 2.0 [1.0–8.1] | |
| Δ15-5 ScvO2, % | 5.5 [1.0–10.8] | 2.5 [0.0–8.1] | |
| Δ15-5 Ca-vO2, mL | 1.0 [0.3–1.7] | 0.6 [0.2–1.3] | |
| Δ15-5 PaCO2, mmHg | 1 [− 1 to 3] | 2 [1–4] | |
| Δ15-5 Ventilatory ratio | 0.04 [− 0.10 to 0.10] | 0.08 [0.02–0.20] | |
| Δ15-5 Estimated physiological dead space | 0.01 [− 0.01 to 0.03] | 0.02 [0.01–0.05] |
T-test or Wilcoxon–Mann–Whitney test were performed, as appropriate. Δ15-5: difference between 15 and 5 cmH2O of PEEP; Ca-vO2: arterial–venous oxygen content difference; Compliancers: respiratory system compliance; ScvO2 central oxygen venous saturation; PvO2 mixed venous oxygen tension
Changes in respiratory mechanics and gas exchange at 5 and 15 cmH2O of PEEP between high and low PaO2/FiO2 group
| Variables | Low | High | |
|---|---|---|---|
| Δ15-5 Plateau pressure, cmH2O | 8 [10–11] | 11 [10–13] | |
| Δ15-5 Driving pressure, cmH2O | 0 [− 2 to 1] | 1 [0–3] | |
| Δ15-5 Respiratory system elastance, cmH2O/L | 0 [− 3 to 3] | 3 [0–6] | |
| Δ15-5 Lung elastance, cmH2O/L | 2 [− 2 to 4] | 3 [1–7] | |
| Δ15-5 Chest wall elastance, cmH2O/L | 0 [− 2 to 1] | 0 [− 2 to 2] | |
| Δ15-5 Lung stress, cmH2O | 9 [7–11] | 9 [8–13] | |
| Δ15-5 Mechanical power, J/min | 9 [8–11] | 10 [9–11] | |
| Δ15-5 Mechanical Power_Compliancers, J/min/(mL/cmH2O) | 0.21 [0.12–0.34] | 0.30 [0.17–0.37] | |
| Δ15-5 PaO2, mmHg | 26 [16–38] | 16 [4–23] | |
| Δ15-5 PaO2/FiO2, mmHg | 31 [16–55] | 28 [9–42] | |
| Δ15-5 Right-to-left shunt, % | − 16 [− 26 to − 10] | 0 [− 11 to 0] | |
| Δ15-5 PvO2, mmHg | 3 [2–11] | 1 [0–2] | |
| Δ15-5 ScvO2, % | 8.5 [4.4–13.4] | 0.6 [− 1 to 3] | |
| Δ15-5 Ca-vO2, mL | 1.3 [0.9–1.8] | 0.4 [0.0–0.6] | |
| Δ15-5 PaCO2, mmHg | 1 [− 2 to 3] | 2 [1–5] | |
| Δ15-5 Ventilatory ratio | 0.04 [− 0.09 to 0.10] | 0.08 [− 0.02 to 0.19] | |
| Δ15-5 Estimated physiological dead space | 0.01 [− 0.02 to 0.03] | 0.02 [0.01–0.05] |
T-test or Wilcoxon–Mann–Whitney test were performed, as appropriate. Δ15-5: difference between 15 and 5 cmH2O of PEEP; Ca-vO2: arterial–venous oxygen content difference; Compliancers: respiratory system compliance; ScvO2 central oxygen venous saturation; PvO2 mixed venous oxygen tension