University of Washington
Seattle, Washington, 98195, United States
NCT Number: NCT03569865
Osteoarthritis (OA) pain affects 50 percent of older adults, more than half of whom also experience significant sleep disturbance. This study examines the impact of an innovative audiovisual stimulation (AVS) program on human brainwaves, and its usefulness to improve sleep. The AVS intervention, if demonstrated to be efficacious for sleep promotion, could benefit millions of people worldwide.
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Notify Me60 year and older
All sexes
Interventional
Not applicable
Seattle, Washington, 98195, United States
Osteoarthritis (OA) affects 50% of older adults. Common comorbidities associated with OA include poor sleep, pain, depression, and fatigue. OA patients with insomnia tend to report greater pain than those without insomnia. A recent systematic review concluded that sleep disturbance is a stronger predictor of chronic pain than vice versa. Standard treatment options for insomnia are medication and Cognitive Behavioral Therapy for Insomnia (CBT-I). Prescription medication has good short term efficacy but benefits do not persist after treatment discontinuation and there are notable side effects. Treatment effects for CBT-I are comparable to or exceed those for medications, and have been shown efficacious for persons with OA pain. However, CBT-I practitioners are not yet available in many healthcare systems. New, effective, and easy-to-use self-management alternatives could greatly help reduce the burden of insomnia and potentially decrease pain, depression, and fatigue in individuals with OA. We propose to test a novel, easily-used, self-management intervention to improve OA-related insomnia, pain, depression and fatigue: open-loop neurofeedback Audio Visual Stimulation (AVS). AVS uses preprogrammed light and sound patterns to evoke brainwave potentials at pre-set designated frequencies. The AVS intervention consists of 30 minutes of light and sound pulsing stimuli that gradually descend from alpha (10 Hz) to delta (2 Hz) frequencies. AVS placebo consists of 30 minutes of constant dim light slowly changing in color, and a steady monotone at ultra-low frequency (below 1 Hz). This proposed study builds upon our successful completion of three pilot studies using AVS. Based on the pilot findings, we hypothesize that the use of active AVS at bedtime induces delta brainwaves, but additional testing is needed to determine how long AVS should be used to produce significant improvements in subjective sleep quality relative to placebo control. In addition, we propose to experimentally test the effect of blue light, which is known to suppress melatonin production, as a potential confounding variable in the AVS intervention. We propose a trial of AVS in 75 community dwelling older adults with chronic comorbid insomnia and OA pain. After baseline assessment, participants will be randomized to 3 groups: AVS-1 (red, green & blue light) vs. AVS-2 (red & green light only) vs. placebo AVS. Participants will self-administer AVS at bedtime nightly for one month. QEEG will be measured at baseline, and then at 2, 3 and 4 weeks to evaluate neurological responses to AVS over time. Insomnia severity will be similarly assessed to determine the most efficacious AVS treatment duration and color array for improving insomnia symptoms. OA-related symptoms (pain, depression, and fatigue) and objective sleep outcomes will also be assessed. Data will inform a definitive RCT of AVS for insomnia and relative OA symptoms.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
A commercially available AVS device (MindPlace Procyon) modified for use in the current study will be used to deliver the AVS programs in this study.
Time frame: Baseline through 4 weeks post baseline
A 7-item questionnaire that is a global measure of perceived insomnia severity. Items use a 5-point scale for total scores of 0-28, with >15 considered moderate severity. The ISI has good internal consistency and is sensitive to changes in sleep of older adults in clinical and research.
Time frame: Baseline through 4 weeks post baseline
Cortical activity will be evaluated using a 19-channel quantitative electroencephalographic system (Discovery 24E, BrainMaster) with a standard electrode cap that has 22 sensors attaching to the scalp.
Time frame: Baseline through 4 weeks post baseline
Sleep and wake pattern (actigraph) will be measured by Philips Respironics Actiwatch-2. Actigraphy is a reliable and objective tool to monitor sleep-wake cycles in ambulatory individuals (including older adults) based on frequency and magnitude of movements.
Time frame: Baseline through 4 weeks post baseline
Self-rating of overall sleep quality and disturbances using 7 sleep components. A PSQI global score >5 is highly sensitive and specific for distinguishing good and poor sleepers.
Time frame: Baseline through 4 weeks post baseline
The BPI is a 9-item questionnaire that assesses severity of pain, impact of pain on daily function, location of pain, pain medications and amount of pain relief in the past 24 hours or the past week.
Time frame: Baseline through 4 weeks post baseline
The PHQ-9 is a 9-item reliable, valid, measure that rates depression symptom severity on a 4-point scale.
Time frame: Baseline through 4 weeks post baseline
A 7-day diary including: bed and rise times, number of nighttime awakenings, total wake time, and morning refreshment. Participants will also report sleep and pain medication, subjective sleep quality, and pain.
Time frame: A 7-item self-report questionnaire to measure fatigue level in a variety of situations. It has strong internal reliability and validity, and been used to measure fatigue with older adults
A 7-item self-report questionnaire to measure fatigue level in a variety of situations. It has strong internal reliability and validity, and been used to measure fatigue with older adults.
Time frame: Baseline through 4 weeks post baseline
A 7-item self-report questionnaire to measure anxiety level in a variety of situations.
University of Washington
Other
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