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首页> 外文期刊>Applied optics >All -fiber optic displacement sensing system for an llizarov transverse tibial bone transport device
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All -fiber optic displacement sensing system for an llizarov transverse tibial bone transport device

机译:Llizarov横脚胫骨运输装置的所有 - 纤维光学位移传感系统

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A single-mode-multimode-single-mode (SMS) optical fiber-based displacement sensing system mounted on an Ilizarov transverse tibial bone transport device for microcirculation reconstruction is reported. Wide-range displacement is approximated as a uniform extension of a spring that is connected to an SMS optical fiber structure acting as the displacement sensor and allowing full displacement characterization. Transmission spectrum changes are measured, providing a displacement range of 24 mm with a sensitivity of -55.42 pm/mm and a resolution of 45.2 mu m. The experimental results are characterized using a polynomial response curve for measuring the displacement due to transverse distraction of the llizarov device. The SMS fiber interrogation system is based on a macrobending fiber edge filter-based ratiometric measurement system. The use of SMS fibers together with the macrobending fiber-based interrogation system eliminates the influence of temperature on the displacement measurement. The implementation of the all-fiber sensing system of this investigation has uniquely facilitated a smart clinical device with a wide displacement range as well as operating in real-time monitoring when attached to the Ilizarov transverse tibial bone transport device. It also means that this fiber-optic sensing device can be made more cost-effective, simpler in construction, and more versatile while providing a high degree of measurement accuracy and resolution. (C) 2020 Optical Society of America
机译:报道了一种用于微循环重建的ILIZAROV横向胫骨运输装置的单模多模 - 单模(SMS)光纤基位移传感系统。宽范围的位移近似为弹簧的均匀延伸,该弹簧连接到作为位移传感器的SMS光纤结构并允许完全位移表征。测量透射光谱变化,提供24 mm的位移范围,灵敏度为-55.42mm / mm,分辨率为45.2μm。实验结果用多项式响应曲线表征,用于测量由于Llizarov器件的横向分散而导致的位移。 SMS光纤询问系统基于大型光纤边缘滤波器的比率测量系统。使用SMS纤维与宏观纤维的询问系统一起消除了温度对位移测量的影响。该研究的全光纤传感系统的实现具有独特的促进智能临床装置,具有宽的位移范围,以及在连接到ILIZAROV横向胫骨骨传输装置时实时监测操作。这还意味着该光纤传感装置可以更具成本效益,施工更简单,并且更通用,同时提供高度的测量精度和分辨率。 (c)2020美国光学学会

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    《Applied optics 》 |2020年第7期| 共8页
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