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Temperature-Compensated Optical Fiber Force Sensing at the Tip of a Surgical Needle

机译:手术针尖处的温度补偿光纤力感测

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摘要

A Fabry–Perot interferometric (FPI) sensor based on interferometric intensity-phase modulation is proposed for in vivo force sensing at the tip of a surgical tool for minimally invasive surgeries. To address significant thermal influence, a temperature compensation solution is first developed where two FPI sensors are used, one being subjected only to temperature variation and used to compensate for the temperature influence of the second sensor. The sensing system is then designed and finally characterized experimentally. In this paper, the two fabricated FPI sensors are identical to 400 μm in outer diameter, and embedded into the tip of a puncture needle that has an inner diameter of 1.54 mm. The sensing system is calibrated by a commercial dynamic force sensor. Results show that the temperature-compensated FPI sensing system has a measurement range of 0–8 N with a resolution of 0.3 N at temperature of 23°C–37.5 °C. Insertion experiments with phantom skin tissue at different temperatures show the thermal effect is compensated.
机译:提出了一种基于干涉式强度相位调制的法布里-珀罗干涉式(FPI)传感器,用于在微创外科手术工具的尖端进行体内力感测。为了解决重大的热影响,首先开发了一种温度补偿解决方案,其中使用了两个FPI传感器,一个仅受到温度变化的影响,并用于补偿第二个传感器的温度影响。然后设计传感系统,并最终进行实验表征。在本文中,两个制成的FPI传感器的外径相同,为400μm,并嵌入内径为1.54 mm的穿刺针的尖端。感测系统由商用动态力传感器校准。结果表明,温度补偿的FPI传感系统在23°C–37.5°C的温度下的测量范围为0–8 N,分辨率为0.3N。在不同温度下用幻像皮肤组织进行的插入实验表明,热效应得到了补偿。

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