Design and Implement Strategy of Wireless Bite Force Device

Abnormal bite force is an important risk factor for oral and maxillofacial disorders, which is a critical dilemma that dentists face every day without effective solutions. Therefore, it is of great clinical significance to develop a wireless bite force measurement device and explore quantitative mea...

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Main Authors: Jinxia Gao, Zhiwen Su, Longjun Liu
Format: Article
Language:English
Published: MDPI AG 2023-04-01
Series:Bioengineering
Subjects:
Online Access:https://www.mdpi.com/2306-5354/10/5/507
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author Jinxia Gao
Zhiwen Su
Longjun Liu
author_facet Jinxia Gao
Zhiwen Su
Longjun Liu
author_sort Jinxia Gao
collection DOAJ
description Abnormal bite force is an important risk factor for oral and maxillofacial disorders, which is a critical dilemma that dentists face every day without effective solutions. Therefore, it is of great clinical significance to develop a wireless bite force measurement device and explore quantitative measurement methods to help find effective strategies for improving occlusal diseases. This study designed the open window carrier of a bite force detection device through 3D printing technology, and then the stress sensors were integrated and embedded into a hollow structure. The sensor system mainly consisted of a pressure signal acquisition module, a main control module, and a server terminal. A machine learning algorithm will be leveraged for bite force data processing and parameter configuration in the future. This study implemented a sensor prototype system from scratch to fully evaluate each component of the intelligent device. The experimental results showed reasonable parameter metrics for the device carrier and demonstrated the feasibility of the proposed scheme for bite force measurement. An intelligent and wireless bite force device with a stress sensor system is a promising approach to occlusal disease diagnosis and treatment.
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spelling doaj.art-60b27405eb8c40f5a743d926ee1f7c862023-11-18T00:30:22ZengMDPI AGBioengineering2306-53542023-04-0110550710.3390/bioengineering10050507Design and Implement Strategy of Wireless Bite Force DeviceJinxia Gao0Zhiwen Su1Longjun Liu2Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology, Xi’an Jiaotong University, Xi’an 710004, ChinaInstitute of Artificial Intelligence and Robotics, The School of Electronic and Information Engineering, Xi’an Jiaotong University, Xi’an 710049, ChinaInstitute of Artificial Intelligence and Robotics, The School of Electronic and Information Engineering, Xi’an Jiaotong University, Xi’an 710049, ChinaAbnormal bite force is an important risk factor for oral and maxillofacial disorders, which is a critical dilemma that dentists face every day without effective solutions. Therefore, it is of great clinical significance to develop a wireless bite force measurement device and explore quantitative measurement methods to help find effective strategies for improving occlusal diseases. This study designed the open window carrier of a bite force detection device through 3D printing technology, and then the stress sensors were integrated and embedded into a hollow structure. The sensor system mainly consisted of a pressure signal acquisition module, a main control module, and a server terminal. A machine learning algorithm will be leveraged for bite force data processing and parameter configuration in the future. This study implemented a sensor prototype system from scratch to fully evaluate each component of the intelligent device. The experimental results showed reasonable parameter metrics for the device carrier and demonstrated the feasibility of the proposed scheme for bite force measurement. An intelligent and wireless bite force device with a stress sensor system is a promising approach to occlusal disease diagnosis and treatment.https://www.mdpi.com/2306-5354/10/5/507stressocclusal splintsprintingmachine learningengineeringosteoarthritis
spellingShingle Jinxia Gao
Zhiwen Su
Longjun Liu
Design and Implement Strategy of Wireless Bite Force Device
Bioengineering
stress
occlusal splints
printing
machine learning
engineering
osteoarthritis
title Design and Implement Strategy of Wireless Bite Force Device
title_full Design and Implement Strategy of Wireless Bite Force Device
title_fullStr Design and Implement Strategy of Wireless Bite Force Device
title_full_unstemmed Design and Implement Strategy of Wireless Bite Force Device
title_short Design and Implement Strategy of Wireless Bite Force Device
title_sort design and implement strategy of wireless bite force device
topic stress
occlusal splints
printing
machine learning
engineering
osteoarthritis
url https://www.mdpi.com/2306-5354/10/5/507
work_keys_str_mv AT jinxiagao designandimplementstrategyofwirelessbiteforcedevice
AT zhiwensu designandimplementstrategyofwirelessbiteforcedevice
AT longjunliu designandimplementstrategyofwirelessbiteforcedevice