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Evaluating the Relationship Between Sleep-Disordered Breathing and Daytime Alertness

Relating Sleep Disordered Breathing to Daytime Function

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT00393913
Enrollment
144
Registered
2006-10-31
Start date
2006-10-31
Completion date
2011-05-31
Last updated
2016-08-05

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

Conditions

Sleep Apnea, Obstructive

Keywords

Sleep Apnea, Sleep-Disordered Breathing, Snoring

Brief summary

Obstructive sleep apnea (OSA) is a serious sleep disorder in which a person repeatedly stops breathing, or experiences shallow breathing for short periods of time during sleep. Daytime sleepiness is a common symptom of OSA and may affect an individual's level of alertness throughout the day. The primary purpose of this study is to evaluate the relationship between the severity of sleep-disordered breathing and levels of daytime alertness at baseline (untreated state) in a group of subjects with and without sleep apnea. In addition the change in daytime sleepiness in subjects with sleep apnea being treated with a continuous positive airway pressure (CPAP) machine, a common treatment for OSA will also be assessed.

Detailed description

Individuals with OSA can experience up to 300 sleep disruptions each night, which may result in excessive daytime sleepiness (EDS), one of the most common symptoms of OSA. EDS can have serious consequences, including motor vehicle accidents, poor school performance, and work-related accidents and performance issues. The most common treatment for OSA is CPAP therapy. This involves wearing a mask over the nose while sleeping; air then flows through the mask into the nose to maintain a level of pressure that keeps the breathing passages open. CPAP therapy typically results in fewer sleep and breathing disruptions during the night, which may increase an individual's alertness levels during the day. The purpose of this study is to evaluate the relationship between severity of sleep-disordered breathing and daytime alertness levels in adults with and withoutout symptoms of OSA. This study will involve three to five study visits over a 2- to 3-month period. During the first 3 days, participants will record their sleep habits in a diary and will wear a device that measures breathing, oxygen levels, and sleep position. All participants will then take part in a 1-night inpatient stay at the sleep center lab during which brain, eye, muscle, heart, and breathing activity will be monitored. Participants with a confirmed diagnosis of OSA will stay at the sleep lab one additional night for observation while using a CPAP machine. The following day, tests to measure alertness, ease of falling asleep, and sleepiness levels will be administered. Participants will then use the CPAP machine at home for 4-6 weeks; each machine will be set at an appropriate level for the participant, and will record breathing patterns and pressure. Participants will receive weekly phone calls for monitoring purposes. At the end of Week 4, participants will return to the sleep lab for one additional night of CPAP monitoring, followed by alertness and sleep testing. Those with severe OSA will use the CPAP machine at a newly adjusted level for 5 additional days and return for repeat testing. All participants who have been compliant with CPAP will return to the lab for overnight sleep testing without the CPAP machine and for alertness testing.

Interventions

DEVICEContinuous Positive Airway Pressure (CPAP)

Positive airway pressure delivered via a nasal mask titrated to a therapeutic level to eliminate all sleep disordered breathing to be used every night for 4-6 weeks.

Sponsors

National Heart, Lung, and Blood Institute (NHLBI)
CollaboratorNIH
NYU Langone Health
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

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

Inclusion criteria

* Experiences symptoms of OSA, including snoring and sleepiness * Stable medical history with no change in medications that could affect sleepiness

Exclusion criteria

* Suspected diagnosis of a sleep disorder other than OSA (i.e., periodic leg movements, narcolepsy, insomnia, central sleep apnea, sleep hypoventilation syndrome) * Medically unstable health conditions (e.g., heart attack, congestive heart failure) * Use of psychotropic medications that cause sedation in the 3 months prior to study entry * Recent or confirmed history of recreational drug use or alcohol abuse * Pregnant * Inability to communicate verbally, write, or read * Visual, hearing, or cognitive impairment

Design outcomes

Primary

MeasureTime frameDescription
Subjective SleepinessBaseline, CPAP( 4 -6 weeks), Off CPAP ( 2 nights)Measured using the Epworth sleepiness scale (ESS). The Epworth sleepiness scale is used in the assessment of daytime sleepiness and measures the general level of sleepiness.The ESS presents the subject with eight situations and asks how likely they are to fall asleep (0= never, 1 =slight chance of dozing, 2= moderate chance of dozing and 3 =high chance of dozing) in these situations. The sum of the 8 answers is used as the score and ranges from 0 (not sleepy) to 24 (extremely sleepy), and a score of greater than 10 is an indication that a person may be excessively sleepy.
Objective SleepinessMeasured at baseline, on CPAP (4-6 weeks), CPAP withdrawal (2 nights)Multiple Sleep Latency Test (MSLT) measures the latency to sleep onset in minutes. The shorter the latency to sleep the more sleepy the subject.
VigilanceBaseline, CPAP (4-6 weeks), CPAP withdrawal (2 nights)Vigilance is measured using the psychomotor vigilance task which is a portable reaction time test that is contained in a small, programmable, portable electronic box that requires only a single switch to start. The task consists of responding to a small bright red light stimulus by pressing a response button as soon as the stimulus appears. This stops the stimulus counter and displays the reaction time (RT) in milliseconds for a 2-second period and the task duration is 20 minutes. The subject is instructed to press the button as soon as each stimulus appears in order to keep the reaction time as low as possible. The PVT yields highly informative metrics on the capacity for sustained attention including the frequency of lapses (reaction time \> 500 milliseconds). The higher the number of lapses the greater the impairment. Well rested (non-sleepy) subjects have almost no lapses(\<2) during the 20min test.

Countries

United States

Participant flow

Recruitment details

Normal volunteers and patients with symptoms of sleep apnea evaluated at the NYU sleep disorders center.

Pre-assignment details

Subjects with sleep disorders other than sleep apnea were not included for initial assessment of the effect of sleep apnea severity to daytime function.

Participants by arm

ArmCount
Sleep Apnea Assessment
All participants were assigned to a single Arm (and received the intervention based on whether they had sleep apnea). Participants with sleep apnea used the CPAP machine for 4 to 6 weeks every night and then returned to the sleep laboratory for assessment of daytime function. Those without sleep apnea will have the initial assessment but then will not receive the intervention.
107
Total107

Withdrawals & dropouts

PeriodReasonFG000
CPAPPhysician Decision1
CPAPTEchnical problem with CPAP3
CPAPWithdrawal by Subject3
Initial Assessmentdiagnosed with other sleep disorder21
Initial AssessmentWithdrawal by Subject16

Baseline characteristics

CharacteristicSleep Apnea Assessment
Age, Categorical
<=18 years
0 Participants
Age, Categorical
>=65 years
4 Participants
Age, Categorical
Between 18 and 65 years
103 Participants
Age, Continuous45 years
STANDARD_DEVIATION 12
Region of Enrollment
United States
107 participants
Sex: Female, Male
Female
38 Participants
Sex: Female, Male
Male
69 Participants

Adverse events

Event typeEG000
affected / at risk
deaths
Total, all-cause mortality
— / —
other
Total, other adverse events
0 / 107
serious
Total, serious adverse events
0 / 107

Outcome results

Primary

Objective Sleepiness

Multiple Sleep Latency Test (MSLT) measures the latency to sleep onset in minutes. The shorter the latency to sleep the more sleepy the subject.

Time frame: Measured at baseline, on CPAP (4-6 weeks), CPAP withdrawal (2 nights)

ArmMeasureGroupValue (MEAN)Dispersion
Sleep ApneaObjective SleepinessSleep Latency-Baseline6.4 minutesStandard Deviation 3.7
Sleep ApneaObjective SleepinessSleep Latency-CPAP5.9 minutesStandard Deviation 3.1
Sleep ApneaObjective SleepinessSleep Latency-CPAP withdrawal7.8 minutesStandard Deviation 4.1
Primary

Subjective Sleepiness

Measured using the Epworth sleepiness scale (ESS). The Epworth sleepiness scale is used in the assessment of daytime sleepiness and measures the general level of sleepiness.The ESS presents the subject with eight situations and asks how likely they are to fall asleep (0= never, 1 =slight chance of dozing, 2= moderate chance of dozing and 3 =high chance of dozing) in these situations. The sum of the 8 answers is used as the score and ranges from 0 (not sleepy) to 24 (extremely sleepy), and a score of greater than 10 is an indication that a person may be excessively sleepy.

Time frame: Baseline, CPAP( 4 -6 weeks), Off CPAP ( 2 nights)

ArmMeasureGroupValue (MEAN)Dispersion
Sleep ApneaSubjective SleepinessBaseline ESS11.8 units on a scaleStandard Deviation 5.6
Sleep ApneaSubjective SleepinessCPAP ESS10.2 units on a scaleStandard Deviation 5
Sleep ApneaSubjective SleepinessCPAP withdrawal ESS9.9 units on a scaleStandard Deviation 4.6
Primary

Vigilance

Vigilance is measured using the psychomotor vigilance task which is a portable reaction time test that is contained in a small, programmable, portable electronic box that requires only a single switch to start. The task consists of responding to a small bright red light stimulus by pressing a response button as soon as the stimulus appears. This stops the stimulus counter and displays the reaction time (RT) in milliseconds for a 2-second period and the task duration is 20 minutes. The subject is instructed to press the button as soon as each stimulus appears in order to keep the reaction time as low as possible. The PVT yields highly informative metrics on the capacity for sustained attention including the frequency of lapses (reaction time \> 500 milliseconds). The higher the number of lapses the greater the impairment. Well rested (non-sleepy) subjects have almost no lapses(\<2) during the 20min test.

Time frame: Baseline, CPAP (4-6 weeks), CPAP withdrawal (2 nights)

Population: Per protocol

ArmMeasureGroupValue (MEAN)Dispersion
Sleep ApneaVigilanceBaseline5.9 LapsesStandard Deviation 4.1
Sleep ApneaVigilanceCPAP4.1 LapsesStandard Deviation 2.6
Sleep ApneaVigilanceCPAP withdrawal6.5 LapsesStandard Deviation 4.5

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