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The Effect of Pink Noise and the Quiet Night Intervention on Sleep Parameters in Intensive Care Unit Patients: A Single-Center Randomized Controlled Trial

The Effect of Pink-Brown Noise and the Quiet Time Intervention on Sleep Parameters in Intensive Care Unit Patients: A Single-Center, Randomized Controlled Trial

Status
Not yet recruiting
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT07412964
Enrollment
18
Registered
2026-02-17
Start date
2026-05-01
Completion date
2027-01-01
Last updated
2026-04-22

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

Conditions

Intensive Care Units, Sleep Disturbance

Keywords

Intensive Care Units, Noise, Sound Masking, Actigraphy, Sleep Disturbance

Brief summary

Sleep disruption is common in adult intensive care unit (ICU) patients and is often worsened by environmental noise and nighttime care activities. Poor sleep may negatively affect recovery and well-being. This single-center, three-arm randomized controlled trial will evaluate the short-term effects of two non-pharmacological interventions-(1) pink-brown noise masking and (2) a quiet time intervention-on objective sleep parameters in adult ICU patients, compared with standard care. Sleep outcomes will be measured using actigraphy-based wearable monitoring, including total sleep time, sleep efficiency, sleep onset latency, wake after sleep onset, and number of awakenings. Results are expected to support evidence-based nursing approaches to improve sleep in ICU patients.

Detailed description

This study is designed as a single-center, three-arm, parallel-group randomized controlled clinical trial to evaluate the short-term effects of environmental acoustic masking and a quiet night intervention on objective sleep parameters in adult intensive care unit (ICU) patients. Sleep disturbance is highly prevalent among critically ill patients due to environmental factors such as excessive noise, continuous light exposure, frequent nursing interventions, alarm sounds, mechanical ventilation, pain, anxiety, and disease-related physiological stress. These factors lead to fragmented and superficial sleep, disruption of the sleep-wake cycle, and are associated with adverse clinical outcomes including delirium, immune dysfunction, hemodynamic instability, prolonged ICU stay, and increased morbidity. The study includes three groups: 1. an acoustic masking intervention group, 2. a quiet night intervention group, and 3. a standard care control group. The acoustic masking group will receive low-frequency, nature-based sound exposure prior to sleep onset, followed by earplug use throughout the night. The quiet night group will receive environmental noise and light reduction measures supported by earplugs and an eye mask. The control group will receive standard ICU care without additional sleep-promoting interventions. Objective sleep parameters will be measured using wrist-worn actigraphy over a single night (23:00-06:00). Primary sleep outcomes include total sleep time, sleep efficiency, sleep onset latency, wake after sleep onset, and number of nocturnal awakenings. Actigraphy is selected as a feasible, non-invasive, and validated method for sleep assessment in critically ill populations. Prior to the main trial, a pilot phase will be conducted to assess the feasibility of the study procedures, the applicability of the interventions, the functionality of data collection methods, and the variability of outcome measures required for sample size estimation. The pilot phase will include all three study arms and will follow the same methodology, eligibility criteria, intervention protocols, and outcome assessments as the main trial. Participants enrolled in the pilot phase will constitute an independent sample and will not be included in the final analysis of the main trial. Data obtained from the pilot phase will be used solely for methodological refinement and sample size calculation. Findings from the pilot phase may be disseminated separately. The study aims to generate evidence for low-cost, non-invasive, nurse-led environmental interventions that can be integrated into routine ICU care to improve sleep quality in critically ill patients.

Interventions

BEHAVIORALAcoustic Noise Masking Intervention

Environmental acoustic noise masking applied before and during nighttime sleep to reduce ambient ICU noise and support sleep continuity.

BEHAVIORALQuiet Night Intervention

A quiet night protocol including environmental noise and light reduction supported by earplugs and an eye mask.

Sponsors

Abant Izzet Baysal University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
SUPPORTIVE_CARE
Masking
SINGLE (Outcomes Assessor)

Masking description

Outcome assessors and data analysts are blinded to group allocation. Participants and care providers are not blinded due to the nature of the interventions.

Intervention model description

This is a single-center, three-arm, parallel-group randomized controlled trial. Participants are randomly assigned to one of three groups: an acoustic noise-masking intervention group, a quiet night intervention group, or a standard care control group. Each participant receives only the assigned intervention.

Eligibility

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

Inclusion criteria

* Inclusion Criteria: * Adults aged 18 years and older * Patients admitted to the adult intensive care unit * Expected ICU stay of at least one night * Ability to tolerate non-invasive sleep-related interventions (earplugs, eye mask, or acoustic masking) * Informed consent obtained from the patient or legally authorized representative

Design outcomes

Primary

MeasureTime frameDescription
Sleep EfficiencySingle night (23:00-06:00)Sleep efficiency will be measured using a single wrist-worn actigraphy device (smartwatch) during nighttime sleep (23:00-06:00).

Secondary

MeasureTime frameDescription
Total Sleep TimeSingle night (23:00-06:00)Total sleep time will be measured using the same single wrist-worn actigraphy device (smartwatch) during nighttime sleep.
Sleep Onset LatencySingle night (23:00-06:00)Sleep onset latency will be calculated as the time from lights-off to sleep onset using the same single wrist-worn actigraphy device (smartwatch).
Wake After Sleep OnsetSingle night (23:00-06:00)Wake after sleep onset will be measured as the total duration of wakefulness after sleep onset using the same single wrist-worn actigraphy device (smartwatch).
Number of Nocturnal AwakeningsSingle night (23:00-06:00)The number of nocturnal awakenings will be measured using the same single wrist-worn actigraphy device (smartwatch) during nighttime sleep.

Countries

Turkey (Türkiye)

Contacts

CONTACTSaadet Can Çiçek, Assoc. Prof., PhD
saadet.cancicek@ibu.edu.tr+90 506 284 6936

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Apr 23, 2026