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Novel System for Bite-Force Sensing and Monitoring Based on Magnetic Near Field Communication

机译:基于电磁近场通信的新型咬合力监测系统

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Intraoral devices for bite-force sensing have several applications in odontology and maxillofacial surgery, as bite-force measurements provide additional information to help understand the characteristics of bruxism disorders and can also be of help for the evaluation of post-surgical evolution and for comparison of alternative treatments. A new system for measuring human bite forces is proposed in this work. This system has future applications for the monitoring of bruxism events and as a complement for its conventional diagnosis. Bruxism is a pathology consisting of grinding or tight clenching of the upper and lower teeth, which leads to several problems such as lesions to the teeth, headaches, orofacial pain and important disorders of the temporomandibular joint. The prototype uses a magnetic field communication scheme similar to low-frequency radio frequency identification (RFID) technology (NFC). The reader generates a low-frequency magnetic field that is used as the information carrier and powers the sensor. The system is notable because it uses an intra-mouth passive sensor and an external interrogator, which remotely records and processes information regarding a patient's dental activity. This permits a quantitative assessment of bite-force, without requiring intra-mouth batteries, and can provide supplementary information to polysomnographic recordings, current most adequate early diagnostic method, so as to initiate corrective actions before irreversible dental wear appears. In addition to describing the system's operational principles and the manufacture of personalized prototypes, this report will also demonstrate the feasibility of the system and results from the first in vitro and in vivo trials.
机译:咬合力感测的口腔内装置在牙科学和颌面外科手术中有多种应用,因为咬合力的测量可提供附加信息,以帮助理解磨牙症的特征,也有助于评估手术后的进展和比较替代治疗。在这项工作中提出了一种新的测量人的咬力的系统。该系统在监测磨牙症事件以及作为其常规诊断的补充方面有未来的应用。磨牙症是一种由上,下牙的磨削或紧密咬合构成的病理,其导致一些问题,例如牙齿损伤,头痛,口面痛和颞下颌关节的重要疾病。该原型使用类似于低频射频识别(RFID)技术(NFC)的磁场通信方案。阅读器会产生一个低频磁场,该磁场用作信息载体并为传感器供电。该系统之所以出名,是因为它使用了一个嘴内被动传感器和一个外部询问器,它们可以远程记录和处理有关患者牙齿活动的信息。这允许对咬合力进行定量评估,而无需使用口内电池,并且可以为多导睡眠图记录(当前最合适的早期诊断方法)提供补充信息,以便在出现不可逆的牙齿磨损之前启动纠正措施。除了描述系统的操作原理和个性化原型的制造外,本报告还将证明该系统的可行性以及首次体外和体内试验的结果。

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