s-Guard: Multisensor Embedded Obstructive Sleep Apnea and Bruxism Real-Time Data Transmission Intraoral Appliance Device

Obstructive sleep apnea (OSA) and bruxism are widely recognized as common forms of sleep obstruction in modern everyday life. The most representative and conventional treatment method using continuous positive airway pressure has a critical problem owing to its high inconvenience. A relatively moder...

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发表在:Applied Sciences
Main Authors: Seo-Joon Lee, Il-Do Jeong, Eo-Bin Kim, Jin-Young Park, In-Hwan Jo, Jae-Hoon Han, Tae-Young Jung
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语言:英语
出版: MDPI AG 2021-05-01
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在线阅读:https://www.mdpi.com/2076-3417/11/9/4182
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author Seo-Joon Lee
Il-Do Jeong
Eo-Bin Kim
Jin-Young Park
In-Hwan Jo
Jae-Hoon Han
Tae-Young Jung
author_facet Seo-Joon Lee
Il-Do Jeong
Eo-Bin Kim
Jin-Young Park
In-Hwan Jo
Jae-Hoon Han
Tae-Young Jung
author_sort Seo-Joon Lee
collection DOAJ
container_title Applied Sciences
description Obstructive sleep apnea (OSA) and bruxism are widely recognized as common forms of sleep obstruction in modern everyday life. The most representative and conventional treatment method using continuous positive airway pressure has a critical problem owing to its high inconvenience. A relatively modern alternative solution is the mandibular advancement device, but it still has no monitoring function for patient compliance. Therefore, this research proposes Sleep Guard (s-Guard), a multisensor embedded OSA monitoring intraoral appliance device based on Internet-of-Things technology. Relevant health information monitoring sensors, such as temperature, gyroscope, accelerometer, and SpO2 sensors, were embedded for real-time health monitoring. Results showed an average transmission speed of 91,870.19 bytes per second, a successful connection check rate of 100%, and a wireless data stream error rate of 0.1%. Overall, the actual speed, connection, and error test results revealed the robust functioning of s-Guard in real monitoring scenarios. This research is envisioned to greatly enhance patient compliance when treating OSA or bruxism and is also expected to motivate other sensors to be embedded in our proposed model for the application of other disease areas.
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spelling doaj-art-e058c0bf3a7e452e88f0bcc7aa326a212025-08-19T22:41:22ZengMDPI AGApplied Sciences2076-34172021-05-01119418210.3390/app11094182s-Guard: Multisensor Embedded Obstructive Sleep Apnea and Bruxism Real-Time Data Transmission Intraoral Appliance DeviceSeo-Joon Lee0Il-Do Jeong1Eo-Bin Kim2Jin-Young Park3In-Hwan Jo4Jae-Hoon Han5Tae-Young Jung6Department of Medical Informatics, College of Medicine, The Catholic University of Korea, 222 Banpo Daero, Seoul 06591, KoreaDepartment of ALFO Research Laboratory, Curaum Inc., Seoul 04307, KoreaDepartment of ALFO Research Laboratory, Curaum Inc., Seoul 04307, KoreaDepartment of ALFO Research Laboratory, Curaum Inc., Seoul 04307, KoreaDepartment of ALFO Research Laboratory, Curaum Inc., Seoul 04307, KoreaDepartment of Strategic Planning, Catholic University of Seoul, 222 Banpo Daero, Seoul 06591, KoreaDepartment of Research, VHS Education and Research Institute, Korea Veterans Health Service, Suwon 16275, KoreaObstructive sleep apnea (OSA) and bruxism are widely recognized as common forms of sleep obstruction in modern everyday life. The most representative and conventional treatment method using continuous positive airway pressure has a critical problem owing to its high inconvenience. A relatively modern alternative solution is the mandibular advancement device, but it still has no monitoring function for patient compliance. Therefore, this research proposes Sleep Guard (s-Guard), a multisensor embedded OSA monitoring intraoral appliance device based on Internet-of-Things technology. Relevant health information monitoring sensors, such as temperature, gyroscope, accelerometer, and SpO2 sensors, were embedded for real-time health monitoring. Results showed an average transmission speed of 91,870.19 bytes per second, a successful connection check rate of 100%, and a wireless data stream error rate of 0.1%. Overall, the actual speed, connection, and error test results revealed the robust functioning of s-Guard in real monitoring scenarios. This research is envisioned to greatly enhance patient compliance when treating OSA or bruxism and is also expected to motivate other sensors to be embedded in our proposed model for the application of other disease areas.https://www.mdpi.com/2076-3417/11/9/4182OSAbruxismCPAPMADsensorIoT
spellingShingle Seo-Joon Lee
Il-Do Jeong
Eo-Bin Kim
Jin-Young Park
In-Hwan Jo
Jae-Hoon Han
Tae-Young Jung
s-Guard: Multisensor Embedded Obstructive Sleep Apnea and Bruxism Real-Time Data Transmission Intraoral Appliance Device
OSA
bruxism
CPAP
MAD
sensor
IoT
title s-Guard: Multisensor Embedded Obstructive Sleep Apnea and Bruxism Real-Time Data Transmission Intraoral Appliance Device
title_full s-Guard: Multisensor Embedded Obstructive Sleep Apnea and Bruxism Real-Time Data Transmission Intraoral Appliance Device
title_fullStr s-Guard: Multisensor Embedded Obstructive Sleep Apnea and Bruxism Real-Time Data Transmission Intraoral Appliance Device
title_full_unstemmed s-Guard: Multisensor Embedded Obstructive Sleep Apnea and Bruxism Real-Time Data Transmission Intraoral Appliance Device
title_short s-Guard: Multisensor Embedded Obstructive Sleep Apnea and Bruxism Real-Time Data Transmission Intraoral Appliance Device
title_sort s guard multisensor embedded obstructive sleep apnea and bruxism real time data transmission intraoral appliance device
topic OSA
bruxism
CPAP
MAD
sensor
IoT
url https://www.mdpi.com/2076-3417/11/9/4182
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