Smart Gnathometer for Bite Force Measurement

Mohd Nor Azmi Ab Patar, Ahmad Ikmal Makhtar, J. Mahmud, Shahrul Azam Abdullah, Hazlina Abdul Ghani, Siti Mariam Ab Ghani, Hokyo Lee, A. Hanafusa
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Abstract

Bite force measurement on teeth is one of the crucial factors contributing to the development of advanced technology and longevity in the fabrication of prosthesis. Throughout the years, many researchers have developed devices to measure and analyse the maximum bite force. However, the innovations of the devices have some drawbacks, such as precision, measurement accuracy and cost-effectiveness. Moreover, some of the devices may affect the health of patients due to the usage of hazardous material. Therefore, a non-hazardous gnathometer has been innovated in the study to precisely measure and analyse the maximum bite force of dentures. A 3D model of the new gnathometer was designed using CATIA V5 and fabricated using a Fused Deposition Modelling (FDM) machine. The gnathomether also consisted of electronic parts, such as an ESP32 and Arduino Nano as a microcontroller, and a flexible force sensor to accurately measure the bite force measurement. A calibration test was carried out on this innovation to measure the accuracy, drift presence and consistency of bite force. This study demonstrated that the force mappings were directly proportional to the voltage and has shown that the resistance gradually decreases until it reaches a minimum or steady state as the force increases. This research on the calibration of force was valid as the accuracy calculated was a minimum of 94.80% with a maximum accuracy error of 5.20%, resulting in high accuracy and reliable results. This study suggested that the gnathometer can analyse the maximum bite force of dentures and is one of the best approaches to obtain precise and accurate bite force measurements. This research can improve dentures studies in the dental industry using the Internet of Things (IoT) technology embedded in the system and real-time bite force monitoring.
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用于咬合力测量的智能咬合力测量仪
牙体的咬合力测量是影响义齿制造技术发展和寿命延长的关键因素之一。多年来,许多研究人员开发了测量和分析最大咬合力的设备。然而,这些设备的创新也存在一些缺点,如精度、测量精度和成本效益。此外,由于使用了有害物质,有些装置可能会影响患者的健康。因此,在研究中创新了一种无危险的咬齿计,以精确测量和分析义齿的最大咬合力。利用CATIA V5设计了新型颌面计的三维模型,并使用熔融沉积建模(FDM)机进行了加工。咬齿计还包括电子部件,如ESP32和Arduino Nano作为微控制器,以及柔性力传感器,以准确测量咬合力。对这一创新进行了校准试验,以测量咬合力的精度、漂移存在和一致性。该研究表明,力映射与电压成正比,并表明随着力的增加,电阻逐渐减小,直到达到最小或稳定状态。本研究对力的标定是有效的,计算精度最小为94.80%,最大精度误差为5.20%,结果精度高,可靠。本研究表明,牙颌计可以分析义齿的最大咬合力,是获得精确咬合力测量的最佳方法之一。本研究可以利用嵌入在系统中的物联网(IoT)技术和实时咬合力监测来改善牙科行业的假牙研究。
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