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The Effect of Two Airway Interventions, During One Lung Ventilation, on Blood Oxygen Content

The Influence Of Continuous Positive Airway Pressure and Positive End-Expiratory Pressure, With A Recruitment Maneuver, On Oxygenation During One Lung Ventilation Employing A Lung Protective Ventilation Strategy.

Status
UNKNOWN
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT01495936
Enrollment
40
Registered
2011-12-20
Start date
2011-10-17
Completion date
2017-12-31
Last updated
2017-11-06

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

Conditions

Thoracic, Diseases

Keywords

One Lung Ventilation (OLV), Continuous Positive Airway Pressure (CPAP), Positive End Expiratory Pressure (PEEP), Lung recruitment maneuver, Hypoxia

Brief summary

Patients requiring one lung ventilation (OLV) for open thoracic surgery will be ventilated (breathing performed by a breathing machine) during anesthesia using a lung protective ventilation strategy (small breath volumes at 6ml/kg). During thoracic surgery the anesthesiologist is able to ventilate only one lung by inserting a special breathing tube, allowing the surgeon to operate on the non ventilated (diseased) lung. In a randomized trial two interventions used to improve blood oxygen levels during one lung ventilation will be compared . The two interventions are: 1. Continuous Positive Airway Pressure (CPAP) applied to the non ventilated (non breathing) lung and 2. Positive End Expiratory Pressure following a lung Recruitment Maneuver (RM-PEEP) to the ventilated (breathing) lung. CPAP is performed by applying a steady flow of oxygen to the non ventilated (non breathing) lung at a continuous gentle pressure of 5cmH20. To perform a Recruitment Maneuver (RM) the anesthesiologist inflates the ventilated (breathing) lung with oxygen, holding the breath for 25 seconds so all the lung is opened up. Immediately after the recruitment maneuver PEEP will be applied. PEEP is an action which also helps keep the lung open, maintaining the benefits achieved by the RM. It is performed by adjusting settings on the ventilator (breathing machine). The ventilator creates and applies a gentle pressure (5cmH20) to the ventilating lung at the end of each breath. The outcome measure will be the oxygen content in blood (PaO2), measured in mmHg, using blood sample analysis. The null hypothesis is that compared to CPAP, RM-PEEP does not significantly increase the oxygen content of blood during OLV when using a lung protective ventilation strategy.

Detailed description

Patients requiring one lung ventilation (OLV) for open thoracic surgery will be ventilated intra-operatively using a lung protective ventilation strategy (small tidal volumes {Vts} at 6ml/kg Ideal Body Weight {IBW}). In a randomized, crossover trial Continuous Positive Airway Pressure (CPAP) to the non ventilated lung or a Recruitment Maneuver (RM) followed by the application of Positive End Expiratory Pressure (PEEP) (acronym RM-PEEP) to the ventilated lung will be applied and blood oxygenation (PaO2) measured by arterial blood gas sampling to determine which intervention has the most beneficial effect on PaO2 (CPAP or RM-PEEP). CPAP will be applied at a pressure of 5cmH2O by a CPAP breathing circuit (designed for the purpose and commonly used in anesthetic practice). The PEEP will be applied at a pressure of 5cmH20 by the operating room (OR) anesthetic machine. The RM will involve a valsalva maneuver, held for 5 seconds at a pressure of 25cmH20, again performed using the OR anesthetic machine. Null hypothesis: Compared to CPAP, RM-PEEP does not significantly increase PaO2 or reduce the incidence of hypoxia (oxygen blood saturation less than or equal to 90%), when employing a lung protective ventilation strategy. This study is based on our previous research (citation 12, Badner et al) in which we compared CPAP to PEEP alone (omitting the recruitment maneuver). Here it was noted that CPAP to the non ventilated lung improved oxygenation more than PEEP to the ventilated lung (even though PEEP is an easier modality to provide), when employing a lung protective ventilation strategy.

Interventions

PROCEDURERM + Positive End Expiratory Pressure

A recruitment maneuver (RM) will be applied to the ventilated lung by performing a valsalva maneuver for 5 seconds (holding the inspiratory pressure at 25cmH2O). Immediately after the RM, Positive End Expiratory Pressure (PEEP) will be applied to the ventilated lung at a pressure of 5cmH2O for 20 minutes. Both the RM and PEEP will be performed using the operating room ventilator.

PROCEDUREContinuous Positive Airway Pressure

Continuous positive airway pressure, at a pressure of 5cmH2O will applied to the non-ventilated lung for 20 minutes by the Mallinckrodt Bronchocath Disposable CPAP system (a recognised anesthetic breathing system design for CPAP)

Sponsors

London Health Sciences Centre Research Institute OR Lawson Research Institute of St. Joseph's
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
CROSSOVER
Primary purpose
BASIC_SCIENCE
Masking
SINGLE (Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

1. Age 18 or older 2. Competent to give consent to enroll in study 3. Booked for scheduled open thoracotomy which involves wedge resection, lobectomy or pneumonectomy requiring OLV 4. American Society of Anesthesia physical status score (ASA) 1-4

Exclusion criteria

1. Unable to give consent 2. Pregnant women 3. Inability to insert an arterial line 4. Presence of other significant pulmonary impairment (PaO2 on room air \<50mmHg, PaCO2 \>50mmHg or known pulmonary hypertension (mean PAP\>25mmHg) 5. Presence of significant cardiovascular disease 6. Altered liver function (Child Pugh scale ≥B) 7. Patients with bullous lung disease. -

Design outcomes

Primary

MeasureTime frameDescription
Partial pressure of oxygen in bloodDay 1Time 0 (the patient is anesthetized and being ventilated on two lungs, just prior to the commencement of one lung ventilation). Time 20 minutes (patient has been ventilated on one lung for 20 minutes and immediately prior to instituting one of the two intervention arms). Time 40 minutes (following a period of 20 minutes on one intervention arm \[either CPAP or RM-PEEP\]. The patient will then enter second intervention arm). Time 60 minutes ( 20 minutes after second intervention arm \[either CPAP or RM-PEEP\])

Secondary

MeasureTime frameDescription
HypoxiaDay 1The incidence of hypoxia (oxygen saturation falling below 90%, measured by pulse oximetry) throughout the entire study period will be recorded and correlated with the study stage.
Hypoxia intervention techniquesDay 1The incidence of necessary hypoxia (oxygen saturation below 90%) intervention techniques (performed by the attending anesthesiologist) will be recorded once the patient has been commenced on one lung ventilation. The interventions recorded will be 1. The need to revert back to two lung ventilation 2. The need to clamp the operative pulmonary artery 3. The need to add CPAP to the non ventilated lung despite being in the RM-PEEP arm of the study. 4. The need to add a RM-PEEP to the ventilated lung despite being in the CPAP arm of the study

Countries

Canada

Contacts

Primary ContactNeal Badner, MD, FRCP (C)
Neal.Badner@lhsc.on.ca519 685 8500
Backup ContactGeorge Nicolaou, MD, FRCP (C)
George.Nicolaou@lhsc.on.ca519 685 8500

Outcome results

None listed

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