Design and analysis of a fiber-optic sensing system for shape reconstruction of a minimally invasive surgical needle

被引:35
|
作者
Issatayeva, Aizhan [1 ]
Amantayeva, Aida [1 ]
Blanc, Wilfried [2 ]
Tosi, Daniele [1 ,3 ]
Molardi, Carlo [1 ]
机构
[1] Nazarbayev Univ, Dept Comp & Elect Engn, Nur Sultan 010000, Kazakhstan
[2] Univ Cote dAzur, INPHYNI, CNRS, UMR 7010, F-06108 Nice, France
[3] Natl Lab Astana, Lab Biosensors & Bioinstruments, Nur Sultan 010000, Kazakhstan
关键词
OPTICAL-FIBERS; BRAGG GRATINGS; SENSOR; TRACKING;
D O I
10.1038/s41598-021-88117-7
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
This paper presents the performance analysis of the system for real-time reconstruction of the shape of the rigid medical needle used for minimally invasive surgeries. The system is based on four optical fibers glued along the needle at 90 degrees from each other to measure distributed strain along the needle from four different sides. The distributed measurement is achieved by the interrogator which detects the light scattered from each section of the fiber connected to it and calculates the strain exposed to the fiber from the spectral shift of that backscattered light. This working principle has a limitation of discriminating only a single fiber because of the overlap of backscattering light from several fibers. In order to use four sensing fibers, the Scattering-Level Multiplexing (SLMux) methodology is applied. SLMux is based on fibers with different scattering levels: standard single-mode fibers (SMF) and MgO-nanoparticles doped fibers with a 35-40 dB higher scattering power. Doped fibers are used as sensing fibers and SMFs are used to spatially separate one sensing fiber from another by selecting appropriate lengths of SMFs. The system with four fibers allows obtaining two pairs of opposite fibers used to reconstruct the needle shape along two perpendicular axes. The performance analysis is conducted by moving the needle tip from 0 to 1 cm by 0.1 cm to four main directions (corresponding to the locations of fibers) and to four intermediate directions (between neighboring fibers). The system accuracy for small bending (0.1-0.5 cm) is 90% and for large bending (0.6-1 cm) is approximately 92%.
引用
收藏
页数:12
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