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A High-Resolution Triaxial Catheter Tip Force Sensor With Miniature Flexure and Suspended Optical Fibers

机译:具有微型弯曲和悬浮光纤的高分辨率三轴导管尖端力传感器

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This article reports a miniature, high-resolution fiber Bragg grating (FBG)-based triaxial force sensor to detect the catheter tip-tissue interaction forces. This sensor counts on a delicate three-dimensional-printed flexure comprising a cylinder with an inner elliptical cavity for detecting lateral forces and a hybrid elastomer to enhance axial elasticity for improving z-directional force sensitivity. Four suspended optical fibers inscribed with FBG each are deployed inside the flexure. Such configurations are designed to maximize the decoupling among three force components, achieve temperature compensation, and raise the sensor's robustness under biofluid-filled environments. The sensor characterization results indicate a high resolution of 0.52 and 0.64 mN for both lateral forces within -0.8 to 0.8 N and 0.63 mN for axial direction force within 0-0.8 N. Validation with dynamic loadings along different azimuth angles shows that the sensor can provide a high-accuracy measurement of three force components with an rms error of less than 3.00%. Temperature-induced errors for force detection are considerably alleviated, showing less than 6.5% in the range of 25 degrees C-50 degrees C. Ex vivo experiments on a swine heart further validate the performances of the designed sensor.
机译:本文报告了基于微型,高分辨率的光纤布拉格光栅(FBG)的三轴力传感器,以检测导管尖端组织相互作用力。该传感器对包括具有内椭圆形腔的圆柱体的精密三维印刷弯曲物,用于检测横向力和混合弹性体,以增强轴向弹性以改善Z方向性灵敏度。铭刻FBG的四个悬浮光纤各自在弯曲部内部部署。这种配置旨在最大化三个力部件之间的去耦,实现温度补偿,并在填充生物流体环境下提高传感器的鲁棒性。传感器表征结果表明,对于0.8·8 n内的轴向力,对于0.8至0.8 n和0.63mN的横向力,对于0-0.8 n内的轴向力的横向力,具有0.52和0.64mn的高分辨率。沿着不同方位角的动态载荷显示传感器可以提供三个力分量的高精度测量,具有均值误差小于3.00%。用于力检测的温度诱导的误差显着缓解,在25摄氏度的范围内显示出小于6.5%。猪心脏的前体内实验进一步验证了设计传感器的性能。

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