Page 356 - Flexible Robotics in Medicine
P. 356
Force sensing in compact concentric tube mechanism with optical fibers 347
[12] T. Li, N.K.K. King, H. Ren, Disposable FBG-based tri-directional force/torque sensor for aspiration
instruments in neurosurgery, IEEE Trans. Ind. Electron. 67 (4) (2020) 3236 3247.
[13] T. Li, N.K.K. King, H. Ren, Disposable FBG-based tri-directional force/torque sensor for aspiration
instruments in neurosurgery, IEEE Trans. Ind. Electron. 67 (4) (2020) 3236 3247.
[14] T. Li, L. Qiu, H. Ren, Distributed curvature sensing and shape reconstruction for soft manipulators with
irregular cross-sections based on parallel-dual FBG arrays, IEEE/ASME Trans. Mechatron. 25 (2019)
406 417.
[15] T. Li, C. Shi, Y. Tan, R. Li, Z. Zhou, H. Ren, A diaphragm type fiber Bragg grating vibration sensor
based on transverse property of optical fiber with temperature compensation, IEEE Sens. J. 17 (4) (2017)
1021 1029.
[16] T. Li, A. Pan, H. Ren, A high-resolution tri-axial catheter-tip force sensor with miniature flexure and
suspended optical fibers, IEEE Trans. Ind. Electron. 67 (6) (2020) 5101 5111.
[17] T. Li, Y. Tan, C. Shi, Y. Guo, Z. Najdovski, H. Ren, et al., A high-sensitivity fiber Bragg grating
displacement sensor based on transverse property of a tensioned optical fiber configuration and its
dynamic performance improvement, IEEE Sens. J. 17 (18) (2017) 5840 5848.
[18] T. Li, H. Ren, A hybrid FBG displacement and force sensor with a suspended and bent optical fiber
configuration, Sens. Actuators A Phys. 268 (2017) 117 125.
[19] C. Shi, T. Li, H. Ren, A millinewton resolution fiber Bragg grating-based catheter two-dimensional distal
force sensor for cardiac catheterization, IEEE Sens. J. 18 (4) (2018) 1539 1546.
[20] C. Li, X. Gu, X. Xiao, G. Zhu, A. Prituja, H. Ren, Transcend anthropomorphic robotic grasping with
modular antagonistic mechanisms and adhesive soft modulations, IEEE Robot. Autom. Lett. 4 (3) (2019)
2463 2470.
[21] R.J. Webster III, J.M. Romano, N.J. Cowan, Mechanics of precurved-tube continuum robots, IEEE Trans.
Robot. 25 (1) (2009) 67 78.