Literature DB >> 23696688

A comparison of leak compensation in acute care ventilators during noninvasive and invasive ventilation: a lung model study.

Jun Oto1, Christopher T Chenelle, Andrew D Marchese, Robert M Kacmarek.   

Abstract

BACKGROUND: Although leak compensation has been widely introduced to acute care ventilators to improve patient-ventilator synchronization in the presence of system leaks, there are no data on these ventilators' ability to prevent triggering and cycling asynchrony. The goal of this study was to evaluate the ability of leak compensation in acute care ventilators during invasive and noninvasive ventilation (NIV).
METHODS: Using a lung simulator, the impact of system leaks was compared on 7 ICU ventilators and 1 dedicated NIV ventilator during triggering and cycling at 2 respiratory mechanics (COPD and ARDS models) settings, various modes of ventilation (NIV mode [pressure support ventilation], and invasive mode [pressure support and continuous mandatory ventilation]), and 2 PEEP levels (5 and 10 cm H(2)O). Leak levels used were up to 35-36 L/min in NIV mode and 26-27 L/min in invasive mode.
RESULTS: Although all of the ventilators were able to synchronize with the simulator at baseline, only 4 of the 8 ventilators synchronized to all leaks in NIV mode, and 2 of the 8 ventilators in invasive mode. The number of breaths to synchronization was higher during increasing than during decreasing leak. In the COPD model, miss-triggering occurred more frequently and required a longer time to stabilize tidal volume than in the ARDS model. The PB840 required fewer breaths to synchronize in both invasive and noninvasive modes, compared with the other ventilators (P < .001).
CONCLUSIONS: Leak compensation in invasive and noninvasive modes has wide variations between ventilators. The PB840 and the V60 were the only ventilators to acclimate to all leaks, but there were differences in performance between these 2 ventilators. It is not clear if these differences have clinical importance.

Entities:  

Keywords:  acute care ventilator; leak compensation; mechanical ventilation

Mesh:

Year:  2013        PMID: 23696688     DOI: 10.4187/respcare.02466

Source DB:  PubMed          Journal:  Respir Care        ISSN: 0020-1324            Impact factor:   2.258


  6 in total

1.  Real time noninvasive estimation of work of breathing using facemask leak-corrected tidal volume during noninvasive pressure support: validation study.

Authors:  Michael J Banner; Carl G Tams; Neil R Euliano; Paul J Stephan; Trevor J Leavitt; A Daniel Martin; Nawar Al-Rawas; Andrea Gabrielli
Journal:  J Clin Monit Comput       Date:  2015-06-13       Impact factor: 2.502

2.  Accuracy of tidal volume delivered by home mechanical ventilation during mouthpiece ventilation: A bench evaluation.

Authors:  Adam Ogna; Helene Prigent; Line Falaize; Karl Leroux; Dante Santos; Isabelle Vaugier; David Orlikowski; Frederic Lofaso
Journal:  Chron Respir Dis       Date:  2016-07-08       Impact factor: 2.444

3.  Bench-test comparison of 26 emergency and transport ventilators.

Authors:  Erwan L'Her; Annie Roy; Nicolas Marjanovic
Journal:  Crit Care       Date:  2014-10-15       Impact factor: 9.097

4.  Combined effects of leaks, respiratory system properties and upper airway patency on the performance of home ventilators: a bench study.

Authors:  Kaixian Zhu; Claudio Rabec; Jésus Gonzalez-Bermejo; Sébastien Hardy; Sami Aouf; Pierre Escourrou; Gabriel Roisman
Journal:  BMC Pulm Med       Date:  2017-11-21       Impact factor: 3.317

Review 5.  Trends in mechanical ventilation: are we ventilating our patients in the best possible way?

Authors:  Raffaele L Dellaca'; Chiara Veneroni; Ramon Farre'
Journal:  Breathe (Sheff)       Date:  2017-06

6.  Scoring System to Evaluate the Performance of ICU Ventilators in the Pandemic of COVID-19: A Lung Model Study.

Authors:  Xingshuo Hu; Fei Xie; Kaifei Wang; Hongjun Gu; Guoxin Mo; Ruoxuan Wen; Ying Zhao; Qingyun Yang; Knut Möller; Zhanqi Zhao; Lixin Xie
Journal:  Front Med (Lausanne)       Date:  2021-07-14
  6 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.