Literature DB >> 18648769

Measurement of end-expiratory lung volume by oxygen washin-washout in controlled and assisted mechanically ventilated patients.

N Patroniti1, M Saini, A Zanella, D Weismann, S Isgrò, G Bellani, G Foti, A Pesenti.   

Abstract

OBJECTIVE: Assessing limits of agreement with helium dilution and repeatability of a new system (lung funcution, LUFU) that measures end-expiratory lung volume (EELV) in mechanically ventilated patients using the O(2) washin (EELV(Win)) and washout (EELV(Wout)) technique. LUFU consists of an Evita 4 ventilator, a side-stream oxygen analyzer, and a dedicated PC software. DESIGN AND
SETTING: Prospective human study in a general ICU of a University hospital. PATIENTS: Thirty-six mechanically ventilated patients.
INTERVENTIONS: We obtained 36 couples of both EELV(Win) and EELV(Wout) measurements in each patient (5 with healthy lungs, 9 with ALI, 22 with ARDS). Measurements were obtained with patients ventilated either by assisted (ASB, 16 measurements) or controlled (CMV, 20 measurements) ventilation. In 19 of 20 cases in CMV, we obtained helium dilution measurements (EELV(He)). MEASUREMENTS AND
RESULTS: Bias for agreement with EELV(He) was -16 +/- 156 and 8 +/- 161 ml, respectively, for EELV(Win) and EELV(Wout). Bias for agreement between EELV(Win) and EELV(Wout) was 28 +/- 78 and 23 +/- 168 ml, respectively, for CMV and ASB. During CMV bias for repeatability were 8 +/- 92 and 23 +/- 165 ml, respectively, for EELV(Win) and EELV(Wout). During ASB bias for repeatability were 32 +/- 160 and -15 +/- 147 ml, respectively, for EELV(Win) and EELV(Wout).
CONCLUSIONS: The LUFU method showed good agreement with helium, and good repeatability during partial and controlled mechanical ventilation. The technique is simple and safe.

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Year:  2008        PMID: 18648769     DOI: 10.1007/s00134-008-1218-1

Source DB:  PubMed          Journal:  Intensive Care Med        ISSN: 0342-4642            Impact factor:   17.440


  25 in total

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4.  Measurement of functional residual capacity during mechanical ventilation. Comparison of a computerized open nitrogen washout method with a closed helium dilution method.

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5.  Automated evaluation of functional residual capacity by oxygen washout.

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6.  Oxygen wash-in method for monitoring functional residual capacity.

Authors:  R R Mitchell; R M Wilson; L Holzapfel; A M Benis; D Sierra; J J Osborn
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7.  Automated sulfur hexafluoride washout functional residual capacity measurement system for any mode of mechanical ventilation as well as spontaneous respiration.

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9.  Measurement of functional residual capacity by sulfur hexafluoride washout.

Authors:  C Jonmarker; L Jansson; B Jonson; A Larsson; O Werner
Journal:  Anesthesiology       Date:  1985-07       Impact factor: 7.892

10.  Determination of functional residual capacity by oxygen washin-washout: a validation study.

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Authors:  J Dellamonica; N Lerolle; C Sargentini; G Beduneau; F Di Marco; A Mercat; J C M Richard; J L Diehl; J Mancebo; J J Rouby; Q Lu; G Bernardin; L Brochard
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3.  Whole lung lavage: a unique model for ultrasound assessment of lung aeration changes.

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8.  Accuracy and precision of end-expiratory lung-volume measurements by automated nitrogen washout/washin technique in patients with acute respiratory distress syndrome.

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9.  Nitrogen washout/washin, helium dilution and computed tomography in the assessment of end expiratory lung volume.

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Review 10.  Year in review in Intensive Care Medicine, 2008: II. Experimental, acute respiratory failure and ARDS, mechanical ventilation and endotracheal intubation.

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