Javascript must be enabled to continue!
Effect of Nitric Oxide Delivery Device on Tidal Volume Accuracy During Mechanical Ventilation at Small Tidal Volumes
View through CrossRef
BACKGROUND:
Inhaled nitric oxide (INO) is used in infants as a therapy for elevated pulmonary vascular resistance. When INO is delivered at low tidal volumes, displayed inspiratory and expiratory volumes vary widely. We hypothesize that volume is removed by the sampling line during the ventilation cycle, and this results in a net volume loss at low tidal volumes. This study aimed to measure the volumes delivered and to assess the accuracy of displayed ventilator values using a test lung.
METHODS:
A test lung was connected to a ventilator and an INO delivery system. All tests were performed with stable mode settings across volumes of 18, 30, 42, and 60 mL. Flow measured with a pneumotachometer attached between the test lung and the circuit assessed the percent error between inspiratory and expiratory volumes measured by the pneumotachometer measured and displayed on the ventilator under various INO/sample line conditions to determine where and how much volume was being displaced.
RESULTS:
Displayed and measured inspiratory volumes had small variations between the INO/sample line conditions and baseline. However, expiratory volumes, with the sample line connected, exhibited large percent error values that increased (−14, −20, −27, and −34) as tidal volume decreased (60, 42, 30, and 18 mL) and error was significantly larger compared to baseline in all tidal volumes (
P
< .01) with and without INO delivery.
CONCLUSIONS:
We concluded that inspiratory volumes were not affected by INO delivery, but additional removal of volume in the expiratory phase of the breath cycle by the sampling line results in a large error in the displayed expiratory volume.
Title: Effect of Nitric Oxide Delivery Device on Tidal Volume Accuracy During Mechanical Ventilation at Small Tidal Volumes
Description:
BACKGROUND:
Inhaled nitric oxide (INO) is used in infants as a therapy for elevated pulmonary vascular resistance.
When INO is delivered at low tidal volumes, displayed inspiratory and expiratory volumes vary widely.
We hypothesize that volume is removed by the sampling line during the ventilation cycle, and this results in a net volume loss at low tidal volumes.
This study aimed to measure the volumes delivered and to assess the accuracy of displayed ventilator values using a test lung.
METHODS:
A test lung was connected to a ventilator and an INO delivery system.
All tests were performed with stable mode settings across volumes of 18, 30, 42, and 60 mL.
Flow measured with a pneumotachometer attached between the test lung and the circuit assessed the percent error between inspiratory and expiratory volumes measured by the pneumotachometer measured and displayed on the ventilator under various INO/sample line conditions to determine where and how much volume was being displaced.
RESULTS:
Displayed and measured inspiratory volumes had small variations between the INO/sample line conditions and baseline.
However, expiratory volumes, with the sample line connected, exhibited large percent error values that increased (−14, −20, −27, and −34) as tidal volume decreased (60, 42, 30, and 18 mL) and error was significantly larger compared to baseline in all tidal volumes (
P
< .
01) with and without INO delivery.
CONCLUSIONS:
We concluded that inspiratory volumes were not affected by INO delivery, but additional removal of volume in the expiratory phase of the breath cycle by the sampling line results in a large error in the displayed expiratory volume.
Related Results
Comparative planetology: probing the interiors of rocky planets through tidal deformation
Comparative planetology: probing the interiors of rocky planets through tidal deformation
Tidal deformation provides one of the most powerful observational probes of the deep interiors of rocky planets and moons. Measurements of tidal Love numbers are sensitive to inter...
Assessment of Nitric Oxide Synthase Protein Level in the Scalp of Androgenetic Alopecia
Assessment of Nitric Oxide Synthase Protein Level in the Scalp of Androgenetic Alopecia
Abstract
Background
Androgenetic alopecia (AGA) is the most common form of hair loss in males due to excessive response t...
Induction of hepatic ito cell nitric oxide production after acute endotoxemia
Induction of hepatic ito cell nitric oxide production after acute endotoxemia
Nitric oxide is a highly reactive mediator released in the liver by hepatocytes, Kupffer cells and endothelial cells during endotoxin-induced inflammation. In this study we determi...
¿Cuál es el volumen tidal ideal en pacientes ingresados en UCI sin SDRA que requieren ventilación mecánica más de 24 horas?
¿Cuál es el volumen tidal ideal en pacientes ingresados en UCI sin SDRA que requieren ventilación mecánica más de 24 horas?
La protección pulmonar en los pacientes críticos sometidos a ventilación mecánica, es uno de los objetivos que persiguen los facultativos cuando utilizan esta herramienta terapéuti...
Nitric Oxide Protects Murine Embryonic Liver Cells (BNL CL.2) from Cytotoxicity Induced by Glucose Deprivation
Nitric Oxide Protects Murine Embryonic Liver Cells (BNL CL.2) from Cytotoxicity Induced by Glucose Deprivation
Abstract:We investigated the protective effects of nitric oxide on cell death of murine embryonic liver cells (BNL CL.2) after glucose deprivation. Endogenous nitric oxide producti...
Combined Ventilation of Two Subjects with a Single Mechanical Ventilator Using a New Medical Device: An In Vitro Study
Combined Ventilation of Two Subjects with a Single Mechanical Ventilator Using a New Medical Device: An In Vitro Study
Introduction. The SARS-CoV-2 pandemic has created a sudden lack of ventilators. DuplicARⓇ is a novel device that allows simultaneous and independent ventilation of two subjects wit...
Role of Fractional Exhaled Nitric Oxide for Monitoring Bronchial Asthma
Role of Fractional Exhaled Nitric Oxide for Monitoring Bronchial Asthma
Background: Monitoring during treatment of asthma is usually done by various clinical tools, spirometry, sputum eosinophils and fractional exhaled nitric oxide. Fractional exhaled ...
Nitric Oxide Pathways in Toxic Responses
Nitric Oxide Pathways in Toxic Responses
AbstractThe host response to chemically induced tissue injury is complex, involving a variety of cell types and soluble mediators. One of the most intensely investigated mediators ...

