The Application of Esophageal Pressure Measurement in Patients with Respiratory Failure

医学 呼吸衰竭 呼吸系统 重症监护医学 急性呼吸衰竭 内科学 机械通风
作者
Evangelia Akoumianaki,Salvatore Maurizio Maggiore,Franco Valenza,Giacomo Bellani,Amal Jubran,Stephen H. Loring,Paolo Pelosi,Daniel Talmor,Salvatore Grasso,Davide Chiumello,Claude Guérin,Nicolò Patroniti,V. Marco Ranieri,Luciano Gattinoni,Stefano Nava,Pietro-Paolo Terragni,Antonio Pesenti,Martin J. Tobin,Jordi Mancebo,Laurent Brochard
出处
期刊:American Journal of Respiratory and Critical Care Medicine [American Thoracic Society]
卷期号:189 (5): 520-531 被引量:656
标识
DOI:10.1164/rccm.201312-2193ci
摘要

This report summarizes current physiological and technical knowledge on esophageal pressure (Pes) measurements in patients receiving mechanical ventilation. The respiratory changes in Pes are representative of changes in pleural pressure. The difference between airway pressure (Paw) and Pes is a valid estimate of transpulmonary pressure. Pes helps determine what fraction of Paw is applied to overcome lung and chest wall elastance. Pes is usually measured via a catheter with an air-filled thin-walled latex balloon inserted nasally or orally. To validate Pes measurement, a dynamic occlusion test measures the ratio of change in Pes to change in Paw during inspiratory efforts against a closed airway. A ratio close to unity indicates that the system provides a valid measurement. Provided transpulmonary pressure is the lung-distending pressure, and that chest wall elastance may vary among individuals, a physiologically based ventilator strategy should take the transpulmonary pressure into account. For monitoring purposes, clinicians rely mostly on Paw and flow waveforms. However, these measurements may mask profound patient-ventilator asynchrony and do not allow respiratory muscle effort assessment. Pes also permits the measurement of transmural vascular pressures during both passive and active breathing. Pes measurements have enhanced our understanding of the pathophysiology of acute lung injury, patient-ventilator interaction, and weaning failure. The use of Pes for positive end-expiratory pressure titration may help improve oxygenation and compliance. Pes measurements make it feasible to individualize the level of muscle effort during mechanical ventilation and weaning. The time is now right to apply the knowledge obtained with Pes to improve the management of critically ill and ventilator-dependent patients.
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