School of Information Engineering, Nanchang University, Nanchang 330031, China.
School of Instrument Science and Engineering, Southeast University, Nanjing 210096, China.
Sensors (Basel). 2019 Jul 11;19(14):3066. doi: 10.3390/s19143066.
In order to improve the precision and stability of puncture surgical operations to assist doctors in completing fine manipulation, a new of type puncturing needle sensor is proposed based on a fiber Bragg grating (FBG). Compared with the traditional puncture needle sensor, the new type of puncturing needle sensor is able to sense not only the axial force, but also the torque force during the puncture process. A spoke-type structure is designed near the needle tip. In order to eliminate the influence of temperature and realize temperature compensation, a reference fiber method using three FBGs is applied. FBG1 and the reference FBG2 are pasted on the upper and lower surfaces of the new-type elastic beam, and FBG3 is pasted into the groove on the surface of the new type of puncturing needle cylinder. The difference of Bragg wavelength between FBG1 and the reference FBG2 is calibrated with the torque force, while the difference between the Bragg wavelength of the FBG3 and the reference FBG2 is calibrated with the axial force. Through simulation and sensing tests, when the torque force calibration range is 10 mN·m, the torque average sensitivity is 22.8 pm/mN·m, and the determination coefficient R is 0.99992, with a hysteresis error Y and repetition error Y of 0.03%FS and 0.81%FS, respectively. When the axial force calibration rang is 5 N, the axial force average sensitivity is 0.089 nm/N, and the determination coefficient R is 0.9997, with hysteresis error Y and repetition error Y of 0.014%FS and 0.11%FS, respectively. The axial force resolution and torque resolution of the new type of puncturing needle sensor are 0.03 N and 0.8 mN·m, respectively. The experimental data and simulation analysis show that the proposed new type of puncturing needle sensor has good practicability and versatility.
为了提高穿刺手术的精度和稳定性,辅助医生完成精细操作,提出了一种基于光纤布拉格光栅(FBG)的新型穿刺针传感器。与传统的穿刺针传感器相比,新型穿刺针传感器不仅能够感知轴向力,还能够感知穿刺过程中的扭矩力。在针尖附近设计了一种轮辐式结构。为了消除温度的影响并实现温度补偿,采用了一种三 FBG 参考光纤法。FBG1 和参考 FBG2 粘贴在新型弹性梁的上下表面,FBG3 粘贴在新型穿刺针筒表面的凹槽中。通过对 FBG1 和参考 FBG2 的布拉格波长差进行校准,可以得到扭矩力,而通过对 FBG3 和参考 FBG2 的布拉格波长差进行校准,可以得到轴向力。通过仿真和传感测试,当扭矩力校准范围为 10 mN·m 时,扭矩平均灵敏度为 22.8 pm/mN·m,决定系数 R 为 0.99992,滞后误差 Y 和重复误差 Y 分别为 0.03%FS 和 0.81%FS。当轴向力校准范围为 5 N 时,轴向力平均灵敏度为 0.089 nm/N,决定系数 R 为 0.9997,滞后误差 Y 和重复误差 Y 分别为 0.014%FS 和 0.11%FS。新型穿刺针传感器的轴向力分辨率和扭矩分辨率分别为 0.03 N 和 0.8 mN·m。实验数据和仿真分析表明,所提出的新型穿刺针传感器具有良好的实用性和通用性。