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The Effect of Extremely Low Frequency Electromagnetic Field Device Improving Sleep and Stress

T

Taipei Medical University

Status

Unknown

Conditions

Schumann Resonance
Sleep Quality
Fatigue
Extremely Low Frequency Electromagnetic Field Device
Stress

Treatments

Device: Extremely low frequency electromagnetic field device
Device: electromagnetic field with no wave

Study type

Interventional

Funder types

Other

Identifiers

NCT04737434
N202006078

Details and patient eligibility

About

The purpose of this study is to explore the effects of extremely low frequency electromagnetic waves on improving stress and sleep quality. Experimental studies, pre- and post-test double-blind crossover tests are adopted. The selected subjects include: patients in the sleep center of the Taipei Medical University Hospital and the Department of Nursing and Bachelor of Taipei Medical University There are about 100 students in the post-nursing department. They are randomly assigned to groups A and B using a computer. The experiment period is two weeks. The two groups will take a pre-questionnaire test in the afternoon of the first day of the experiment and wear wearable bracelets. Group A first After getting the device with low-frequency electromagnetic field, group B first got the device without low-frequency electromagnetic field. The appearance of the two is the same. The bracelet is worn from the afternoon of the first day to the afternoon of the fourth day, a total of three days, and the device is withdrawn at the end of the first stage The two groups exchanged, repeat the steps to complete the second stage, after the end of the post-test, the two groups plug in the device half an hour before going to bed every day, and put it on the bedside table about 20cm away from the head, and then turn off the device after getting up. The research tools are basic attribute questionnaires, sleep quality scales, sleep diaries, smart care VIP bracelets, and EEG. Among them, the wearable bracelet can monitor the stress index, fatigue index, calories burned, and walking steps. Then SPSS 22.0 software is used for data file building and statistical analysis. The data is analyzed by descriptive statistics and inferential statistics. The expected result is that the experimental group and the control group have significant differences in reducing stress and improving sleep quality, which can relieve stress and improve sleep quality.

Enrollment

100 estimated patients

Sex

All

Ages

20 to 100 years old

Volunteers

Accepts Healthy Volunteers

Inclusion criteria

  • under 20 years old,great mental health,BMI is between 18.5~24(normal range).

Exclusion criteria

  • Cognitive disturbance, confusion, pregnancy, alcohol and caffeine addiction.

Trial design

Primary purpose

Health Services Research

Allocation

Randomized

Interventional model

Crossover Assignment

Masking

Triple Blind

100 participants in 2 patient groups, including a placebo group

Extremely low frequency electromagnetic field device
Experimental group
Description:
with extremely low frequency electromagnetic wave
Treatment:
Device: Extremely low frequency electromagnetic field device
electromagnetic field with no wave
Placebo Comparator group
Description:
electromagnetic field with no wave
Treatment:
Device: electromagnetic field with no wave

Trial contacts and locations

1

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Data sourced from clinicaltrials.gov

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