BertoniM, TeliasI, UrnerM, et al.A novel non-invasive method to detect excessively high respiratory effort and dynamic transpulmonary driving pressure during mechanical ventilation. Crit Care, 2019; 23(1):346; doi: 10.1186/s13054-019-2617-0
2.
GogniatE, SteinbergE, TiribelliN, et al.Validation of Airway Occlusion Pressure as a Method of Assessing Breathing Effort During Noninvasive Ventilation. Respir Care, 2025; 70(4):368–376; doi: 10.1089/respcare.12324
3.
de VriesHJ, TuinmanPR, JonkmanAH, et al.Performance of Noninvasive Airway Occlusion Maneuvers to Assess Lung Stress and Diaphragm Effort in Mechanically Ventilated Critically Ill Patients. Anesthesiology, 2023; 138(3):274–288; doi: 10.1097/ALN.0000000000004467
4.
OtisAB, FennWO, RahnH. Mechanics of breathing in man. J Appl Physiol, 1950; 2(11):592–607; doi: 10.1152/jappl.1950.2.11.592
5.
GoligherEC, DresM, FanE, et al.Mechanical ventilation–induced diaphragm atrophy strongly impacts clinical outcomes. Am J Respir Crit Care Med, 2018; 197(2):204–213; doi: 10.1164/rccm.201703-0536OC
6.
TeliasI, JunhasavasdikulD, RittayamaiN, et al.Airway Occlusion Pressure As an Estimate of Respiratory Drive and Inspiratory Effort during Assisted Ventilation. Am J Respir Crit Care Med, 2020; 201(9):1086–1098; doi: 10.1164/rccm.201907-1425OC
7.
ItoY, HerreraMG, HotzJC, et al.Estimation of inspiratory effort using airway occlusion maneuvers in ventilated children: a secondary analysis of an ongoing randomized trial testing a lung and diaphragm protective ventilation strategy. Crit Care, 2023; 27(1):466; doi: 10.1186/s13054-023-04754-6
8.
WhitelawWA, DerenneJP, MilicEmili J. Occlusion pressure as a measure of respiratory center output in conscious man. Respir Physiol, 1975; 23(2):181–199; doi: 10.1016/0034-5687(75)90059-6