Skip to content

End Tidal Carbon Dioxide Monitoring for Evaluating Changes of PaCO2 After Noninvasive Mechanical Ventilation in COPD

End Tidal Carbon Dioxide Monitoring for Evaluating Changes of Arterial Carbon Dioxide After Noninvasive Mechanical Ventilation in Chronic Obstructive Pulmonary Disease

Status
UNKNOWN
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT01821365
Enrollment
40
Registered
2013-04-01
Start date
2013-03-31
Completion date
2013-07-31
Last updated
2013-04-05

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

COPD

Keywords

COPD,PETCO2,PaCO2

Brief summary

Sidestream end-tidal CO2 has been found to be closely correlated to PaCO2 especially when people have the stable hemodynamics and normal lung function. PETCO2 can basically reflect the level of PaCO2,but some investigators found that PETCO2 measurements did not reflect PaCO2 in COPD patients.There may be several reasons for this discrepancy. Due to airway obstruction and ventilation-perfusion mismatch, there is a delay in the maximum alveolar concentration of CO2 reaching the cannula, which may give lower PETCO2 values compared with PaCO2. To overcome this disadvantage, we tried to prolong their expiratory time (extend to 5-8s) in order to guarantee adequate time for alveolar CO2 reaching the cannula.our study mainly focus on two issues.First, to explore the optimal depth of tube placed when patients with COPD breathe spontaneously or receive noninvasive ventilation, and compare the differences of two condition at the same time. Secondly, to evaluate the agreement between the PaCO2 and sidestream PETCO2(5s)values in COPD patients receiving noninvasive ventilation when our extension tube locates in the optimal position, and investigate whether PETCO2(5s)can be used to monitor ventilation status dynamically.

Detailed description

Non-invasive positive pressure ventilation(NPPV) can significantly improve gas exchange and relieve respiratory muscle fatigue for COPD,and arterial blood gas is the gold standard to evaluate ventilation status,but the procedure is time consuming,invasive, painful and in some patients. Sidestream end-tidal CO2 has been found to be closely correlated to PaCO2 especially when people have the stable hemodynamics and normal lung function. PETCO2 can basically reflect the level of PaCO2, but for patients with COPD, due to the presence of airway obstruction and emphysema formation, which cause ventilation-perfusion ratio(V/Q) , result to dead space-tidal volume ratio(VD/VT) and right-to-left shunting(Qs/Qt), the time of various lung units discharge of carbon dioxide is not synchronous. Some investigators found that PETCO2 measurements did not reflect PaCO2 in COPD patients. There may be several reasons for this discrepancy. Due to airway obstruction and ventilation-perfusion mismatch, there is a delay in the maximum alveolar concentration of CO2 reaching the cannula, which may give lower PETCO2 values compared with PaCO2. To overcome this disadvantage, we tried to prolong their expiratory time (extend to 5-8s) in order to guarantee adequate time for alveolar CO2 reaching the cannula. our study mainly focus on two issues.First, to explore the optimal depth of tube placed when patients with COPD breathe spontaneously or receive noninvasive ventilation, and compare the differences of two condition at the same time. Secondly, to evaluate the agreement between the PaCO2 and sidestream PETCO2(5s)values in COPD patients receiving noninvasive ventilation when our extension tube locates in the optimal position, and investigate whether PETCO2(5s)can be used to monitor ventilation status dynamically.

Interventions

None listed

Sponsors

The First Affiliated Hospital of Guangzhou Medical University
Lead SponsorOTHER

Study design

Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
40 Years to 85 Years
Healthy volunteers
No

Inclusion criteria

1.patients are enrolled in accordance with 2011 international treatment guidelines of COPD. 2.patients are in a clear state of mind and can incompliance with clinicians to extend breathing only using nose and closing mouth.

Exclusion criteria

1.Hemodynamic instability. 2.Pulmonary embolism,Pneumothorax, pleural effusion, upper airway obstruction,Chest trauma, chest wall deformities, neuromuscular diseases, lung tumor. 3.combinating acute exacerbation of bronchial asthma in this hospitalization. 4.Nose and mouth trauma, deformity, or recent surgery.

Design outcomes

Primary

MeasureTime frameDescription
the agreement and correlation between the partial pressure of end-tidal carbon dioxide(PETCO2)one dayPETCO2 was measured by using sidestream capnometer though prolonged expiratory method(extend to 5s) , and obtained arterial blood sampling simultaneously.

Countries

China

Contacts

Primary Contactrongchang Chen, MD
Chenrc99@163.com020-83062718

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026