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使用光纤 F-P 传感器监测 3D 打印颅骨模型中快速腭扩张 (RPE) 的开启情况。

Monitoring the Opening of Rapid Palatal Expansion (RPE) in a 3D-Printed Skull Model Using Fiber Optic F-P Sensors.

机构信息

Institute of Stomatology, Shandong University, Jinan 250012, China.

Department of Orthodontics, Qilu Hospital of Shandong University, Jinan 250012, China.

出版信息

Sensors (Basel). 2023 Aug 14;23(16):7168. doi: 10.3390/s23167168.

Abstract

We present a novel method for the online measurement of multi-point opening distances of midpalatal sutures during a rapid palatal expansion (RPE) using fiber optic Fabry-Perot (F-P) sensors. The sensor consists of an optical fiber with a cut flat end face and an optical reflector, which are implanted into the palatal base structure of an expander and is capable of measuring the precise distance between two optical reflective surfaces. As a demonstration, a 3D-printed skull model containing the maxilla and zygomaticomaxillary complex (ZMC) was produced and a miniscrew-assisted rapid palatal expander (MARPE) with two guide rods was used to generate the midpalatal suture expansion. The reflected spectrums of the sensors were used to dynamically extract cavity length information for full process monitoring of expansion. The dynamic opening of the midpalatal suture during the gradual activation of the expander was measured, and a displacement resolution of 2.5 μm was demonstrated. The angle of expansion was derived and the results suggested that the midpalatal suture was opened with a slight V-type expansion of 0.03 rad at the first loading and subsequently expanded in parallel. This finding might be useful for understanding the mechanical mechanisms that lead to different types of expansion. The use of a fiber optic sensor for mounting the rapid palatal expander facilitates biomechanical studies and experimental and clinical evaluation of the effects of RPE.

摘要

我们提出了一种使用光纤 Fabry-Perot(F-P)传感器在线测量快速腭扩张(RPE)过程中多点腭中缝张开距离的新方法。传感器由带有切割平面端面的光纤和光学反射器组成,植入扩张器的腭基结构中,能够测量两个光学反射面之间的精确距离。作为演示,我们制作了一个包含上颌骨和颧骨上颌复合体(ZMC)的 3D 打印颅骨模型,并使用带有两个导向杆的微型螺钉辅助快速腭扩张器(MARPE)来产生腭中缝扩张。传感器的反射光谱用于动态提取腔长信息,以实现整个扩张过程的监测。测量了扩张器逐渐激活过程中腭中缝的动态张开情况,并证明了 2.5μm 的位移分辨率。还推导了扩展角度,结果表明,腭中缝在第一次加载时以 0.03 弧度的轻微 V 型扩张打开,随后平行扩展。这一发现可能有助于理解导致不同类型扩张的机械机制。使用光纤传感器安装快速腭扩张器有助于进行生物力学研究以及 RPE 效果的实验和临床评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/865a/10458582/3fbd8db6736f/sensors-23-07168-g001.jpg

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