The Effects of Automatic Inspiratory Rise Time and Flow Termination on Operation of Closed-Loop Ventilation.

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Date

2023-05

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Abstract

Background

Adaptive ventilation mode (AVM) is a automated mode of mechanical ventilation. AVM is comprable to adaptive support ventilation (ASV). Both recommend a tidal volume (VT) and breathing frequency (f) combination based on lung mechanics, but AVM also automatically adjusts rise time and flow termination of pressure support breaths. How these added features of AVM affect VT and f recommendations compared to ASV is not clear. The present study compared these 2 modes in a test lung with obstructive and restrictive mechanics.

Methods

The experiment was performed in a simulated lung model in which the compliance (C) and resistance (R) could be altered independently. The ventilatory parameters at different minute volumes (MinVol%) in AVM or ASV mode were recorded.

Results

When MinVol% was set at 100%, AVM provided a similar VT and f combination compared to ASV with decreasing compliance or increasing resistance. However, when MinVol% was increased to 250% simulating hyperventilation, for the severely obstructive lung (C60, R70) model, AVM provided a significantly higher f (26 ± 0.6 breaths/min vs 7.00 ± 0 breaths/min in ASV) and lower VT (240 ± 80 mL vs 491 ± 131 mL in ASV).

Conclusions

The addition of automatic control of rise time and flow termination functions did not affect recommended ventilator settings in AVM in the noncompliant or obstructive lung when minute ventilation (V̇E) was low. At higher V̇E, AVM compared to ASV recommended a ventilatory strategy with lower VT and higher f. These results need to be validated in patients.

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Subjects

Lung, Humans, Tidal Volume, Respiration, Artificial, Positive-Pressure Respiration, Ventilators, Mechanical, Respiration

Citation

Published Version (Please cite this version)

10.4187/respcare.10475

Publication Info

Yang, Shih Hsing, Chin Pyng Wu, Yuh Chin T Huang and Chung Kan Peng (2023). The Effects of Automatic Inspiratory Rise Time and Flow Termination on Operation of Closed-Loop Ventilation. Respiratory care, 68(5). pp. 669–675. 10.4187/respcare.10475 Retrieved from https://hdl.handle.net/10161/33710.

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Scholars@Duke

Huang

Yuh-Chin Tony Huang

Professor of Medicine

Closed loop ventilation
Environmental medicine
Oxidative lung injury
COPD
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