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Miniaturized triaxial optical fiber force sensor for MRI-Guided minimally invasive surgery

机译:MRI引导的微创手术用微型三轴光纤力传感器

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This paper describes the design and construction of a miniaturized triaxial force sensor which can be applied inside a magnetic resonance imaging (MRI) machine. The sensing principle of the sensor is based on an optical intensity modulation mechanism that utilizes bent-tip optical fibers to measure the deflection of a compliant platform when exposed to a force. By measuring the deflection of the platform using this optical approach, the magnitude and direction of three orthogonal force components (Fx, Fy, and Fz) can be determined. The sensor prototype described in this paper demonstrates that it can perform force measurements in axial and radial directions with working ranges of +/− 2 N. Since the sensor is small in size and entirely made of nonmetallic materials, it is compatible with minimally invasive surgery (MIS) and safe to be deployed within magnetic resonance (MR) environments.
机译:本文介绍了可在磁共振成像(MRI)机器内部应用的小型三轴力传感器的设计和构造。传感器的传感原理基于光强度调制机制,该机制利用弯曲尖端的光纤来测量柔性平台在受到力时的挠度。通过使用这种光学方法测量平台的挠度,可以确定三个正交力分量(F x ,F y 和F z )即可确定。本文所述的传感器原型证明,它可以在+/- 2 N的工作范围内执行轴向和径向力测量。由于该传感器尺寸小且完全由非金属材料制成,因此可与微创手术兼容(MIS),可以安全地部署在磁共振(MR)环境中。

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