一种用于微创手术的温度补偿光纤力传感器

Z. Mo, W. Xu, N. Broderick, H. Chen
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引用次数: 1

摘要

微创手术中的力传感是一个长期存在的问题,因为它具有强烈的磁共振(MR)操作环境,这对传统的电子力传感器造成了很大的影响。由于光学传感器不受磁流变的影响,因此它是一种很有前途的选择。然而,温度的变化会给传感器带来大量的噪声信号,这是光学传感在MIS中应用的主要障碍。本文提出了一种利用法布里-珀罗干涉(FPI)原理的微型温度补偿光学力传感器。它可以集成到医疗工具的尖端,并通过使用参考FPI温度传感器来降低温度噪声。制作了一种内置温度补偿FPI力传感器的注射针,并进行了测试。并将温度-力模拟结果与温度-力实验结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A temperature-compensated optical fiber force sensor for minimally invasive surgeries
Force sensing in minimally invasive surgery (MIS) is a chronic problem since it has an intensive magnetic resonance (MR) operation environment, which causes a high influence to traditional electronic force sensors. Optical sensor is a promising choice in this area because it is immune to MR influence. However, the changing temperature introduces a lot of noise signals to them, which is the main obstacle for optical sensing applications in MIS. This paper proposes a miniature temperature-compensated optical force sensor by using Fabry-Perot interference (FPI) principle. It can be integrated into medical tools’ tips and the temperature noise is decreased by using a reference FPI temperature sensor. An injection needle with embedded temperature-compensated FPI force sensor has been fabricated and tested. And the comparison between temperature-force simulation results and the temperature-force experiment results has been carried out.
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