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Clinical and experimental validation of a capnodynamic method for end‐expiratory lung volume assessment
Author(s) -
Öhman Tomas,
Sigmundsson Thorir S.,
Hallbäck Magnus,
Suarez Sipmann Fernando,
Wallin Mats,
Oldner Anders,
Björne Håkan,
Hällsjö Sander Caroline
Publication year - 2020
Publication title -
acta anaesthesiologica scandinavica
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.738
H-Index - 107
eISSN - 1399-6576
pISSN - 0001-5172
DOI - 10.1111/aas.13552
Subject(s) - medicine , positive end expiratory pressure , plethysmograph , lung volumes , anesthesia , lung , mechanical ventilation , limits of agreement , repeatability , concordance , tidal volume , ventilation (architecture) , functional residual capacity , respiratory system , nuclear medicine , mechanical engineering , chemistry , chromatography , engineering
Lung protective ventilation can decrease post‐operative pulmonary complications. The aim of this study was to evaluate a capnodynamic method estimating effective lung volume (ELV) as a proxy for end‐expiratory lung volume in response to PEEP changes in patients, healthy subjects and a porcine model. Methods Agreement and trending ability for ELV in anaesthetized patients and agreement in awake subjects were evaluated using nitrogen multiple breath wash‐out/in and plethysmography as a reference respectively. Agreement and trending ability were evaluated in pigs during PEEP elevations with inert gas wash‐out as reference. Results In anaesthetized patients bias (95% limits of agreement [LoA]) and percentage error (PE) at PEEP 0 cm H 2 O were 133 mL (−1049 to 1315) and 71%, at PEEP 5 cm H 2 O 161 mL (−1291 to 1613 mL) and 66%. In healthy subjects: 21 mL (−755 to 796 mL) and 26%. In porcines, at PEEP 5‐20 cm H 2 O bias decreased from 223 mL to 136 mL LoA (34‐412) to (−30 to 902) and PE 29%‐49%. Trending abilities in anaesthetized patients and porcines were 100% concordant. Conclusion The ELV‐method showed low bias but high PE in anaesthetized patients. Agreement was good in awake subjects. In porcines, agreement was good at lower PEEP levels. Concordance related to PEEP changes reached 100% in all settings. This method may become a useful trending tool for monitoring lung function during mechanical ventilation, if findings are confirmed in other clinical contexts.