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基于光纤布拉格光栅传感器的咬合力测量。

Bite force measurement based on fiber Bragg grating sensor.

机构信息

Indian Institute of Science, Department of Instrumentation and Applied Physics, Bangalore, India.

Indian Institute of Science, Department of Electrical Communication Engineering, Bangalore, India.

出版信息

J Biomed Opt. 2017 Oct;22(10):1-6. doi: 10.1117/1.JBO.22.10.107002.

Abstract

The maximum level of voluntary bite force, which results from the combined action of muscle of mastication, joints, and teeth, i.e., craniomandibular structure, is considered as one of the major indicators for the functional state of the masticatory system. Measurement of voluntary bite force provides useful data for the jaw muscle function and activity along with assessment of prosthetics. This study proposes an in vivo methodology for the dynamic measurement of bite force employing a fiber Bragg grating (FBG) sensor known as bite force measurement device (BFMD). The BFMD developed is a noninvasive intraoral device, which transduces the bite force exerted at the occlusal surface into strain variations on a metal plate. These strain variations are acquired by the FBG sensor bonded over it. The BFMD developed facilitates adjustment of the distance between the biting platform, which is essential to capture the maximum voluntary bite force at three different positions of teeth, namely incisor, premolar, and molar sites. The clinically relevant bite forces are measured at incisor, molar, and premolar position and have been compared against each other. Furthermore, the bite forces measured with all subjects are segregated according to gender and also compared against each other.

摘要

最大的自愿咬合力,这是由咀嚼肌、关节和牙齿的联合作用产生的,即颅颌结构,被认为是咀嚼系统功能状态的主要指标之一。自愿咬合力的测量为颌肌肉功能和活动提供了有用的数据,同时也为修复体评估提供了数据。本研究提出了一种利用光纤布拉格光栅(FBG)传感器进行动态咬合力测量的体内方法,称为咬合力测量装置(BFMD)。所开发的 BFMD 是一种非侵入性的口腔内装置,它将作用于咬合面的咬合力转换为金属板上的应变变化。这些应变变化由粘贴在其上的 FBG 传感器获得。所开发的 BFMD 便于调整咬合平台之间的距离,这对于在三个不同的牙齿位置(即切牙、前磨牙和磨牙)捕获最大自愿咬合力是必不可少的。在切牙、磨牙和前磨牙位置测量了与临床相关的咬合力,并对其进行了比较。此外,根据性别对所有受试者的咬合力进行了分组,并对其进行了比较。

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