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Not yet recruitingNCT06029881Updated Sep 8, 2023

Portable System for Non-intrusive Monitoring of Sleep

An observational study in Sleep Apnea, sponsored by Erasme University Hospital. Not yet recruiting at 1 site in Belgium. Open to participants aged 18 Years to 70 Years. Per ClinicalTrials.gov, last updated 2023-09-08.

Sponsored by Erasme University Hospital · Observational

From the registry’s dates

  • Primary completion was expected by Feb 2024, 2 years 7 months ago, but the record still lists the study as not yet recruiting.
Study type
Observational
Model
Case-only
Time perspective
Prospective
Enrollment
47
Ages
18 Years to 70 Years
Sex
All
01

Study summary

Obstructive sleep apnea (OSA) is a prevalent kind of sleep-disordered breathing affecting one-seventh of the world's population. Almost 45 percent of this population suffers from mild to severe apnea. However, in many cases it remains undiagnosed, leading to increased health risks. Sleep-disordered breathing, as seen in OSA, can have serious long-term consequences, including sympathetic nervous system activation, sleep disturbances, heart remodeling, and cardiovascular disease development.

Polysomnography is the standard method for assessing sleep-breathing disorders, which requires the attachment of various sensors by a trained technician or a healthcare professional. However, if the diagnosis of OSA depends on referral to a sleep laboratory, and if the referral is reliant on symptoms of an OSA syndrome, then current screening approaches may exclude a large population of individuals at risk. Besides, the number of sleep centers and caregivers is limited, and the associated costs are high. Therefore, alternative techniques allowing home monitoring are necessary.

The goal of this observational study is to evaluate the accuracy of the Kinocardiography technique in detecting apneic episodes during sleep and comparing the results with the gold standard polysomnography in 47 patients suffering from obstructive sleep apnea. We hypothesize that this device is able to detect sleep-disordered breathing events, and thus to compute the apnea-hypopnea index, with an accuracy that is close to that of the polysomnography.

Participants who meet the criteria will be invited to participate in this protocol and do both polysomnography and kinocardiography records simultaneously at night during sleep.

Read the detailed description
  1. Study Glossary

    • BCG = Ballistocardiography
    • ECG = Electrocardiography
    • PSG = Polysomnography
    • SCG = Seismocardiography
    • KCG = Kinocardiography
  2. Monitoring Technique

    Ballistocardiography (BCG) and seismocardiography (SCG) are two promising technologies for monitoring vital signs during sleep. BCG measures body movements caused by blood flow ejection at each cardiac contraction, while SCG detects micro-vibrations from heart contractions on the chest surface. These low-cost and unobtrusive technologies have been used in various sleep studies, showing promise in vital sign recording, detecting abnormal breathing episodes, and studying the effects of disease and environmental conditions. However, more research and replication of studies are required for widespread application.

    Kinocardiography:

    Kinocardiography (KCG) is a technique that combines BCG and SCG with electrocardiography (ECG). The BCG module is placed close to the subject's center of mass in the lumbar vertebrae. The SCG module is placed on the sternum beneath the clavicle, close to the heart and major blood vessels. Each module is a MOVESENSE device that incorporates a three-axis accelerometer and three-axis gyroscope sensor and is attached to the body using standard sticky gel electrodes and a belt. The overall system is remotely controlled via a Bluetooth-connected smartphone or tablet. This device allows the measurement of the micro-accelerations induced by the cardiac activity at the body's surface. By computing these accelerations, it is possible to calculate other parameters, such as the kinetic energies associated with the contraction of the heart.

    Polysomnography:

    Polysomnography (PSG) includes various techniques to monitor neurophysiological, cardiopulmonary, and other physiologic parameters simultaneously. PSG uses electroencephalogram, electrooculogram, electromyogram, ECG, pulse oximetry, airflow, and respiratory effort to identify the underlying causes of sleep disturbances.

  3. Safety Reporting

    The MOVESENSE device will be used in this study to collect ECG and signals from accelerometers and gyroscopes. Once this data has been collected, then the analysis will be conducted within the Erasme hospital. This device is a CE-marked medical device (https://ec.europa.eu/tools/eudamed/#/screen/search-device/8d619c90-794a-4564-9a54-829aefa9c707).

    The hazard probability is extremely low, and its severity is minimal (the only possibility is feeling uncomfortable with the electrodes' gel on the skin).

    If a subject becomes uncomfortable, they can call the nurse/operator throughout the measurement and will be able to let the operator know right away if they want to stop the measurement.

  4. Strategies for participant recruitment

The recruitment will be done among the subjects referred for PSG as required by their medical condition. This study will not affect in any manner the regular medical care of the patients admitted to the sleep laboratory. Subjects will be recruited within the routine of the sleep laboratory in the Erasme hospital. Subjects who meet the criteria will be invited to participate in this protocol and do both PSG and KCG records simultaneously.

02

Conditions studied

  • Sleep Apnea

Keywords

  • obstructive sleep apnea
  • Ballistocardiography
  • Seismocardiography
  • Polysomnography
  • sleep assessment
03

In context

Apnea

1,422 studies on the registry are indexed under Apnea; 159 are open to participants now.

This study's planned enrollment of 47 is below the median of 106 across 386 observational studies indexed under Apnea.

Browse Apnea studies →

Lead sponsor

Erasme University Hospital is the lead sponsor of 178 studies on the registry; 34 are open to participants now.

Counted across the registry records on this site, refreshed daily.

04

Who can participate

Ages eligible
18 Years to 70 Years
Sexes eligible
All
Accepts healthy volunteers
No
Sampling method
Non-probability sample

Study population

Patients admitted for complaints of sleep disturbances with no prior treatment for sleep apnea and no known cardiovascular pathologies.

Inclusion criteria

  • The participants should be adult patients who come to Erasme Hospital's sleep department with complaints about sleep disturbances.
  • 18 \< age \<70
  • BMI \< 35 kg/m2

Exclusion criteria

Exclusion Criteria:

  • Being under any kind of obstructive sleep apnea treatment (cPAP therapy, etc.)
  • Having been diagnosed with Atrial fibrillation, significant valvular heart disease, or ventricular dysfunction
  • Age \<18 or age > 70
  • BMI > 35 kg/m2
05

Study design

Observational model
Case-only
Time perspective
Prospective
Enrollment
47 participants (estimated)
Target follow-up
1 Day
Patient registry
Yes

Groups and cohorts

  • Obstructive sleep apnea patients

    Patients admitted for complaints of sleep disturbances with no prior significant cardiovascular disease. Inclusion criteria: * 18 \< age \<70 * BMI \< 35 kg/m2 Exclusion criteria: * Being under any kind of OSA treatment (cPAP therapy, etc.) * Having been diagnosed with Atrial fibrillation, significant valvular heart disease, or ventricular dysfunction * Age \<18 or age \> 70 * BMI \> 35 kg/m2

    Device: Movesense MD

Interventions

  • DeviceMovesense MD

    This device can be attached to the skin (on the chest and center of mass) during sleep using a belt and adhesive electrodes.

06

What researchers measure

Primary outcomes

  1. Sensitivity and Specificity of MOVESENSE sensor in detecting patients suffering from apnea

    Sensitivity and Specificity of MOVESENSE sensor in detecting patients suffering from apnea based on the apnea-hypopnea index (AHI) and different grades of severity: AHI\<5; 5\<AHI\<15; 15\<AHI\<30; 30\<AHI.

    Time frame: During 1 night (~8hours)

Secondary outcomes

  1. Variation of kinetic energy during apneic episodes

    Measurement of changes in seismocardiography/ballistocardiography integral of kinetic energy (in mJ.s) during and immediately after an apneic episode.

    Time frame: During 1 night (~8hours)

07

Study locations

1 site
  • Erasme hospital
    Bruxelles, 1070, Belgium
    • Philippe van de Borne, PhD. MD. · Contact · philippe.vandeborne@hubruxelles.be · 02 555 39 60 ext +32
    • Paniz Balali, MSc · Sub investigator
    • Philippe van de Borne, PhD. MD. · Principal investigator
08

References and documents

Individual participant data

Plan to share: No

No publications or documents are linked to this record.

09

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Sep 8, 2023, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
10

Registry details

Key details

Study ID
NCT06029881
Lead sponsor
Erasme University Hospital
Collaborators
Fonds de la Recherche Scientifique (fnrs)
Responsible party
Philippe Van de Borne (Professor, Erasme University Hospital) — Principal investigator
First posted
Sep 8, 2023
Start date
Sep 20, 2023 (estimated)
Primary completion
Feb 29, 2024 (estimated)
Completion
Feb 29, 2024 (estimated)
Last update
Sep 8, 2023

Study contacts

Paniz Balali
Contact
paniz.balali@ulb.be
02 555 32 75 ext +32
Philippe van de Borne
principal investigator · Professor

Oversight

Data monitoring committee
No
FDA-regulated drug
No
FDA-regulated device
No
View the source record on ClinicalTrials.gov ↗

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This study is not yet recruiting, as verified in Sep 2023. You cannot join it, but the record below documents what was studied.

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