Skip to content

Effects of BEMER Electromagnetic Field Intervention on Sleep, Readiness to Play and Injuries in Elite Athletes

The Effect of Bio-electromagnetic-energy-regulation Therapy (BEMER) on Sleep, Readiness to Play and Injuries in Elite Athletes - a Triple Blinded Randomized Controlled Trial

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT07299669
Acronym
BEMER-sport
Enrollment
60
Registered
2025-12-23
Start date
2025-01-18
Completion date
2025-10-15
Last updated
2026-01-06

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

Conditions

Fatigue Recovery

Keywords

BEMER, Athletes, Recovery, Sleep, Injury, Readiness to play, Rate of perceived exertion

Brief summary

Elite athletes (female football players) will be randomized to 1 of 2 conditions, comprising a BEMER electromagnet field mattress and a sham-mattress. The mattress is to be used in bed for 8 minutes each morning, and for 8 minutes each evening, for 10 weeks. The system has 3 intensity levels - low, medium, and high. The low level will be used for the 4 first weeks, the medium level for the following 2 weeks, and the high level for the last 4 weeks. Those in the sham conditions have a display and mattress looking identical, and follow the same procedure as those in BEMER electromagnet field mattress condition. The primary outcome comprises total sleep time and sleep efficacy assessed with a sleep radar as well as readiness to play (composite measure of daily self-report of fatigue, sleep quality, muscle soreness, stress and mood). Secondary outcomes comprise duration of deep sleep also assessed with the sleep radar, injury severity, and rate of perceived exertion following training and matches. Baseline registrations are conducted for 4 weeks prior to the intervention and outcomes are registered during the last 4 weeks of the intervention.

Detailed description

Contrary to common assumptions, athletes often experience insufficient sleep, particularly in the context of competitive events. Furthermore, a significant proportion of athletes report poor sleep quality, potentially linked to frequent travel, intense training, suboptimal training times and inadequate caloric intake. Female athletes are especially susceptible, facing additional challenges such as role conflicts, gender discrimination, body image concerns, increased risk of eating disturbances, and negative impact from menstruation, all of which may hinder restitution. A promising intervention to enhance and facilitate restitution involves the use of low frequency pulsed electromagnetic field (PEMF) therapy, which has demonstrated the potential to increase blood flow, particularly in micro vessels, and is as such assumed to increase micro-circulation, among other in the skeleton muscles. The effectiveness of PEMF therapy in athletes has so far not been investigated using a randomized controlled design. In this study, a triple blind (participants, researchers and statistician) randomized controlled trial will be undertaken, with female athletes (N=60) from national (Norway) football teams being randomly designed to receive either a placebo mattress or a PEMF-mattress based on a 1:1 ratio, using stratified randomization by team. During a baseline assessment period of 4 weeks, 3 primary outcomes (radar assessed total sleep time and sleep efficiency), and readiness to play (composite measure of daily self-report of fatigue, sleep quality, muscle soreness, stress and mood) will be recorded at a daily basis. These 3 outcomes will be analyzed also specifically for the day/night following matches (as secondary outcomes). Other secondary outcomes comprise the amount (duration) of slow wave sleep/deep, assessed with the sleep radar technology, the severity of injuries, and the rate of perceived exertion (RPE) following training and matches. The participants (N=60) will following the 4-week baseline registration commence a 10 week intervention phase involving daily use of the mattress for 2 (morning and evening) x 8 minutes. The system has 3 levels of PEMF-intensity (low, medium, high). The first four weeks the low intensity will be used, the next two the medium intensity will be used, thereafter (last four weeks) the high intensity will be used. This intervention period will be accompanied by reassessment of the primary and secondary outcomes during the last 4 weeks of the 10-week intervention period.

Interventions

DEVICEBEMER electromagnetic-energy-regulation therapy

The BEMER is bio-electric-magnetics-energy-regulation therapy uses a specific waveform of pulsed electromagnetic field (PEMF) to improve microcirculation by 30%. In the present study the bio-electric-magnetics-energy-regulation therapy will be provided through mattresses

DEVICESham (No Treatment)

Sham mattress with no electromagnetic output

Sponsors

Western Norway University of Applied Sciences
CollaboratorOTHER
Norwegian University of Science and Technology
CollaboratorOTHER
University of Bergen
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
BASIC_SCIENCE
Masking
TRIPLE (Subject, Investigator, Outcomes Assessor)

Intervention model description

The two arms/conditions involves an electromagnetic mattress and an sham-mattress

Eligibility

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

Inclusion criteria

* Minimum 18 years of age * Female elite football player in Norway * Playing on team willing to part-take in the study

Exclusion criteria

• None

Design outcomes

Primary

MeasureTime frameDescription
Total sleep timeChange from baseline (4 weeks before interventions) to the last 4 weeks of the intervention.Total sleep time in the main sleep episode assessed with the sleep radar Somnofy, expressed as minutes per day. High total sleep time is regarded as a more positive outcome than a lower total sleep time.
Sleep efficiencyChange from baseline (4 weeks before intervention) to the last 4 weeks of the interventionPercentage of time in bed following shut-eye (lights out) to rising from bed where the participant did sleep - assessed with the sleep radar Somnofy during the main sleep period. The measure comprises the percentage of time being asleep, and higher values (percentage) are regarded as a better outcome than lower values (percentage).
Readiness to playChange from baseline (4 weeks before intervention) to the last 4 weeks of the interventionDaily morning self-report on an adapted version of the Hooper Index (Hooper, Mackinnon, Howard, Gordon, & Bachmann, 1995), comprising four items assessing fatigue, sleep quality, muscle soreness, and stress. Each item is rated on a 7-point scale ranging from 1 to 7 (where 7 is the worst state and 1 is the best state). A composite daily score ranging from 4 to 28 is calculated - lower scores are associated with the best outcomes.

Secondary

MeasureTime frameDescription
Deep sleep durationChange from baseline (4 weeks before intervention) to the last 4 weeks of the interventionDeep sleep duration assessed with the sleep radar Somnofy during the main sleep period, expressed in minutes. Higher values are regarded as better outcomes than lower values
Total sleep time the day following matchesChange from baseline (4 weeks before interventions) to the last 4 weeks of the intervention exclusively on the nights after matches.Total sleep time in the main sleep episode assessed with the sleep radar Somnofy the day following matches, expressed as minutes per day. High total sleep time is regarded as a more positive outcome than a lower total sleep time.
Rate of perceived exertionChange from baseline (4 weeks before interventions) to the last 4 weeks of the intervention.Rate of Perceived Exertion (RPE) following training and matches as measured by a single item based on the Borg CR-10 scale (Borg, 1990). The response alternatives ranges from 0 (no exertion) to 10 (maximal exertion). Lower values are regarded as better outcomes than higher values.
Health problemsChange from baseline (4 weeks before interventions) to the last 4 weeks of the intervention.Health problems are assessed with the Oslo Sports Trauma Research Center Questionnaire on Health Problems-2. The questionnaire has four items (degree of health problem impact on: 1) participation in training, 2) modification of training, 3) performance, and 4) pain). All items have four response alternatives and each is scored 0-8-17-25. A composite score ranging from 0-100 is calculated - higher numbers reflect higher health problem severity. The instrument will be administered once per week.
Sleep efficiency the day following matchesChange from baseline (4 weeks before intervention) to the last 4 weeks of the intervention exclusively the night following matches.Percentage of time in bed following shut-eye (lights out) to rising from bed where the participant did sleep assessed with the sleep radar Somnofy during the main sleep period - the day following matches. The measure comprises the percentage of time being asleep, and higher values (percentage) are regarded as a better outcome than lower values (percentage).
Readiness to play the day after matchesChange from baseline (4 weeks before intervention) to the last 4 weeks of the intervention, exclusively on the day after matches.Daily morning self-report on an adapted version of the Hooper Index (Hooper, Mackinnon, Howard, Gordon, & Bachmann, 1995), comprising four items assessing fatigue, sleep quality, muscle soreness, and stress. Each item is rated on a 7-point scale ranging from 1 to 7 (where 7 is the worst state and 1 is the best state). A composite daily score ranging from 4 to 28 is calculated - lower scores are associated with the best outcomes.

Countries

Norway

Outcome results

None listed

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