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The Use of High Frequency Oscillations With NIV in Hypercapnic COPD Participants

The Use of High Frequency Oscillations With Noninvasive Ventilation (NIV) in Hypercapnic Chronic Obstructive Pulmonary Disease (COPD) Participants

Status
Terminated
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02680639
Enrollment
10
Registered
2016-02-11
Start date
2015-11-13
Completion date
2016-08-24
Last updated
2019-05-06

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

Conditions

Chronic Obstructive Pulmonary Disease

Keywords

High-Frequency Ventilation, Biphasic Continuous Positive Airway Pressure

Brief summary

Chronic Obstructive Pulmonary Disease (COPD) is a major cause of chronic morbidity and mortality throughout the world, being the fourth leading cause of death in the world. This study is designed to detect COPD participants with Expiratory Flow Limitation. EFL occurs when the airways become compressed which usually results when a pressure outside the airway exceeds the pressure inside the airway. Participants will undergo study eligibility procedures at visit 1. At visit 2 participants will undergo a baseline auto-EPAP (Expiratory Positive Airway Pressure) measurement. Then the order will be randomized to three different treatment methods. Between each treatment there will be at least a 10 minute washout period in order for CO2 to stabilize and return to baseline.

Detailed description

Chronic Obstructive Pulmonary Disease (COPD) is a major cause of chronic morbidity and mortality throughout the world, being the fourth leading cause of death in the world. COPD is a disease that results in varying degrees of dyspnea, or shortness of breath. Spirometry is a method of diagnosing COPD with the presence of a post bronchodilator FEV1 \<80% of the predicted value in combination with an FEV1 / FVC \<70%. This would confirm that there is a presence of airflow limitation that is not fully reversible. The presence of airflow limitation has been identified as one of the main causes of dyspnea in patients with chronic obstructive pulmonary disease (1). Expiratory Flow Limitation (EFL) occurs when the airways become compressed which usually results when a pressure outside the airway exceeds the pressure inside the airway. As an airflow obstruction worsens, EFL appears at much lower flows for a given lung volume and it becomes present at rest or at least develops early during exercise (2). Early detection of EFL consisted of either invasive balloon catheterization or relatively complex plethysmographic techniques. An alternative approach, and one that will be used in this study, involves utilizing the Forced Oscillation Technique (FOT). Alternatively High Frequency Oscillations (HFO) has shown to effectively lower CO2 levels, but traditionally require intubation or a trans tracheal catheter. Treatment with a specialized noninvasive ventilator is possible and it is proposed that therapy can be augmented by the application of an optimized EPAP to splint open the lower airways in order to increase the diffusive capabilities of the high frequency oscillations into lower alveolar regions. There are approximately 25 million hypercapnic patients with EFL that could benefit from this therapy. High frequency oscillations integrated into a specialized noninvasive ventilator has the advantages of lower cost than other solutions and significantly lower medical risks. In addition, high frequency oscillation uses lower pressures to achieve effective therapy which means less chance of barotrauma and greater patient acceptance. This study will enroll subjects at a screening visit. Screening will include a physical exam and vital signs, pregnancy test (if applicable), questionnaires, pulse oximetry, measure of carbon dioxide levels, determination of EFL by an auto- Expiratory Positive Airway Pressure (EPAP) ventilator, and spirometry. If the patient is eligible and tolerates the above procedures, they will be asked to complete an in home-based sleep study prior to visit 2. Alice Night One/ Alice PDX are portable home sleep testing devices that record information about breathing. At visit 2 participants will be monitored continuously via a 3 lead EKG, oxygen saturation by pulse oximetry (SPO2), Carbon Dioxide concentration(TcCO2) monitor, RespiTrace belt and ventilator data. During Visit 2, participants will first undergo a repeat optimal EPAP determination and then trial 3 different sessions of High Frequency Oscillation (HFO) therapy for 20 minutes with at least a 10 minute wash out period between each session to allow the participant's CO2 to stabilize or return to baseline. The order of the sessions will be randomized for each patient. Participants will be placed in a semi-recumbent position and wear a nasal CPAP mask for each session. A TcCO2 monitor patch will be placed on the skin (forehead area) to collect carbon dioxide measurements during each session. A RespiTrace belt will placed on the participants' chest wall to measure chest wall and diaphragmatic excursion during each session. A 3 lead EKG will also be used to monitor cardiac activity during each session.

Interventions

DEVICEBiPAP Synchrony ventilator

The BiPAP Synchrony ventilator will be used to determine Expiratory Positive Airway Pressure (EPAP). The ventilator will be used with varying pressure supports and oscillations depending on what arm of the study the participant is in.

Sponsors

University of Pittsburgh Medical Center
CollaboratorOTHER
Philips Respironics
Lead SponsorINDUSTRY

Study design

Allocation
RANDOMIZED
Intervention model
FACTORIAL
Primary purpose
BASIC_SCIENCE
Masking
NONE

Eligibility

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

Inclusion criteria

* Age \> 21 years of age; \< 85 years of age * Participants that have been physician diagnosed (primary diagnosis) with Obstructive Airway Disease (to include:Chronic Obstructive Pulmonary Disease (COPD); Bronchiectasis; Severe Asthma); forced expiratory volume in 1 second (FEV1) \< 60% FEV1/ forced vital capacity (FVC) \<60% * Arterial CO2 \> 45 mmHg as determined by blood gas (PaCO2) or transcutaneous (tcCO2) \>50 within the past month * Ability to provide consent * Participant has not used Non-Invasive Ventilation (BiPAP/CPAP) therapy in the past 8 hours * Participant has no child bearing potential OR a negative pregnancy test in a woman of childbearing potential

Exclusion criteria

* Participants that have not returned to their baseline health status from an exacerbation of COPD or other pulmonary problems or have not established at least two weeks of stability at a new baseline. * Use of antibiotics or prednisone for a COPD exacerbation within the previous 4 weeks. * Uncontrolled Hypertension * Participants that require greater than 3 liters of oxygen at rest * History of cardiovascular instability, including uncontrolled ventricular arrhythmias, angina, diastolic BP \> 100 mmHg and all Participants with pacemakers * Any major non-COPD uncontrolled disease or condition, such as congestive heart failure, malignancy, end-stage heart disease, liver or renal insufficiency (that requires current evaluation for liver or renal transplantation or dialysis), amyotrophic lateral sclerosis, or severe stroke, or other condition as deemed appropriate by investigator as determined by review of medical history and / or participant reported medical history * History of pneumothorax * Apnea Hypopnea Index (AHI) \> 15 via in-home sleep study * Excessive alcohol intake (\> 6oz hard liquor, 48 oz. beer or 20 oz. wine daily), or illicit drug use by review of medical history and / or participant reported medical history * Daily use of prescribed narcotics (greater than 30 mg morphine equivalent) * History of Giant bullous emphysema * A positive urine pregnancy test when screening for study

Design outcomes

Primary

MeasureTime frameDescription
Carbon Dioxide LevelsBaseline and 20 minutesTranscutaneous carbon dioxide (TcCO2) monitoring is a non-invasive alternative to arterial blood sampling. Carbon Dioxide Levels will be measured for each participant as they complete each arm.

Secondary

MeasureTime frameDescription
Respiratory Rate20 minutesMinute ventilation in regards to respiratory rate and volume of gas exchanged will be measured for each participant as they complete each arm.
Tidal Volume20 minutesMinute ventilation in regards to volume of gas exchanged will be measured for each participant as they complete each arm.
Minute Ventilation for Carbon Dioxide20 minutesMinute Ventilation in regards to the diffusion state of the lungs and carbon dioxide will be measured for each participant as they complete each arm.

Countries

United States

Participant flow

Recruitment details

Participants were in enrolled from a single site in Pittsburgh PA. The study opened Mid 2015 with first enrollment November 2015 and continued into August 2016.

Participants by arm

ArmCount
All Participants
All participants that signed consent.
10
Total10

Withdrawals & dropouts

PeriodReasonFG000FG001FG002
Screening PeriodScreen Failure700

Baseline characteristics

CharacteristicAll Participants
Age, Continuous64.8 years
STANDARD_DEVIATION 6.1
Ethnicity (NIH/OMB)
Hispanic or Latino
1 Participants
Ethnicity (NIH/OMB)
Not Hispanic or Latino
9 Participants
Ethnicity (NIH/OMB)
Unknown or Not Reported
0 Participants
Race (NIH/OMB)
American Indian or Alaska Native
0 Participants
Race (NIH/OMB)
Asian
0 Participants
Race (NIH/OMB)
Black or African American
1 Participants
Race (NIH/OMB)
More than one race
0 Participants
Race (NIH/OMB)
Native Hawaiian or Other Pacific Islander
0 Participants
Race (NIH/OMB)
Unknown or Not Reported
1 Participants
Race (NIH/OMB)
White
8 Participants
Region of Enrollment
United States
10 participants
Sex: Female, Male
Female
3 Participants
Sex: Female, Male
Male
7 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
EG002
affected / at risk
deaths
Total, all-cause mortality
0 / 100 / 20 / 1
other
Total, other adverse events
0 / 100 / 20 / 1
serious
Total, serious adverse events
1 / 100 / 20 / 1

Outcome results

Primary

Carbon Dioxide Levels

Transcutaneous carbon dioxide (TcCO2) monitoring is a non-invasive alternative to arterial blood sampling. Carbon Dioxide Levels will be measured for each participant as they complete each arm.

Time frame: Baseline and 20 minutes

ArmMeasureGroupValue (MEAN)Dispersion
Optimal EPAP DeterminationCarbon Dioxide LevelsBaseline57.8 mmHgStandard Deviation 9.1
Optimal EPAP DeterminationCarbon Dioxide Levels20 Minutes51.1 mmHgStandard Deviation 8.7
Optimized EPAP w/ no Peak-to-peakCarbon Dioxide Levels20 Minutes49.7 mmHgStandard Deviation 6
Optimized EPAP w/ no Peak-to-peakCarbon Dioxide LevelsBaseline52.6 mmHgStandard Deviation 7.1
Optimized EPAP w/ Max Peak-to-peakCarbon Dioxide LevelsBaseline53.1 mmHgStandard Deviation 9.8
Optimized EPAP w/ Max Peak-to-peakCarbon Dioxide Levels20 Minutes50.2 mmHgStandard Deviation 8.5
Non-optimized EPAP w/ no Peak-to-peakCarbon Dioxide LevelsBaseline52.4 mmHgStandard Deviation 8.5
Non-optimized EPAP w/ no Peak-to-peakCarbon Dioxide Levels20 Minutes49.7 mmHgStandard Deviation 8.3
Secondary

Minute Ventilation for Carbon Dioxide

Minute Ventilation in regards to the diffusion state of the lungs and carbon dioxide will be measured for each participant as they complete each arm.

Time frame: 20 minutes

Population: Respiratory rate and Tidal volume were not able to be obtained for one participant. Therefore minute ventilation was not able to be calculated.

ArmMeasureValue (MEAN)Dispersion
Optimal EPAP DeterminationMinute Ventilation for Carbon Dioxide6708 mL/minStandard Deviation 492
Optimized EPAP w/ no Peak-to-peakMinute Ventilation for Carbon Dioxide5906.5 mL/minStandard Deviation 168.5
Optimized EPAP w/ Max Peak-to-peakMinute Ventilation for Carbon Dioxide6791 mL/minStandard Deviation 1184
Non-optimized EPAP w/ no Peak-to-peakMinute Ventilation for Carbon Dioxide6072 mL/minStandard Deviation 576
Secondary

Respiratory Rate

Minute ventilation in regards to respiratory rate and volume of gas exchanged will be measured for each participant as they complete each arm.

Time frame: 20 minutes

Population: Respiratory rate was not able to be obtained for one participant.

ArmMeasureValue (MEAN)Dispersion
Optimal EPAP DeterminationRespiratory Rate18.5 breaths per minuteStandard Deviation 2.5
Optimized EPAP w/ no Peak-to-peakRespiratory Rate22 breaths per minuteStandard Deviation 3
Optimized EPAP w/ Max Peak-to-peakRespiratory Rate23 breaths per minuteStandard Deviation 2
Non-optimized EPAP w/ no Peak-to-peakRespiratory Rate24 breaths per minuteStandard Deviation 0
Secondary

Tidal Volume

Minute ventilation in regards to volume of gas exchanged will be measured for each participant as they complete each arm.

Time frame: 20 minutes

Population: Tidal volume was not able to be obtained for one participant.

ArmMeasureValue (MEAN)Dispersion
Optimal EPAP DeterminationTidal Volume373 mLStandard Deviation 77
Optimized EPAP w/ no Peak-to-peakTidal Volume272.5 mLStandard Deviation 29.5
Optimized EPAP w/ Max Peak-to-peakTidal Volume293 mLStandard Deviation 26
Non-optimized EPAP w/ no Peak-to-peakTidal Volume253 mLStandard Deviation 24

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