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Development of a ring cavity-based fibre optic sensor for MR-compatible medical sensing applications

机译:用于MR兼容的医疗传感应用的环形光纤传感器的研制

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Advances in robotic systems and rapid developments in minimally invasive surgery(MIS)have made their use possible in the operating room due to many distinct advantages offered by MIS over conventional surgical procedures.The constant increase of medical examinations,surgeries and surgical interventions using intraoperative guidance with magnetic resonance imaging(MRI)has promoted research on new sensors to be applied in this scenario.However,due to the challenging environment under MRI system limits the applicability of materials and traditional electronic sensors.Optical fibres are small in size,chemically inert,immune to electromagnetic interference and offer the real-time in vivo multi-parameter measurement capability.Herein,we report a ring cavity-based fibre optic sensor design using MR-compatible polymer material.Optical fibres were used to excite surface resonance modes(SRM)of the ring cavity-based sensor.The paper reports initial investigations on ring cavity based MR-compatible fibre optic sensor design.Computational simulations were carried out to study the effect of structural and material parameters on the sensor design.Ring cavity was developed using polymethyi methacrylate.Developed ring cavity will be used to develop the MR-compatible fibre optic sensor for medical applications.
机译:机器人系统的进展和微创手术中的快速发展(MIS)由于传统手术程序超出了许多不同的优势,在手术室中可以在手术室中使用。使用术中指导的医学检查,手术和外科手术干预的不断增加磁共振成像(MRI)促进了在这种情况下应用的新传感器的研究。然而,由于MRI系统下的具有挑战性的环境限制了材料和传统电子传感器的适用性。光纤尺寸小,化学惰性,化学惰性,免受电磁干扰并提供实时的体内多参数测量能力。我们使用MR相容的聚合物材料报告基于环形的光纤传感器设计。光学纤维用于激发表面共振模式(SRM)环形腔的传感器。报告初步研究基于环腔的MR-CompatiBL E光纤传感器设计进行了研究,以研究结构和材料参数对传感器设计的影响。使用聚甲基丙烯酸酯开发的腔。开发的环腔将用于开发用于医疗的MR兼容的光纤传感器应用程序。

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