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Zaili Dong
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2010 – 2019
- 2015
- [j9]Dong Wang, Peng Yu, Feifei Wang, Ho-Yin Chan, Lei Zhou, Zaili Dong, Lianqing Liu, Wenjung Li:
Improving Atomic Force Microscopy Imaging by a Direct Inverse Asymmetric PI Hysteresis Model. Sensors 15(2): 3409-3425 (2015) - [j8]Yangjie Wei, Chengdong Wu, Wang Yi, Zaili Dong:
Efficient Shape Reconstruction of Microlens Using Optical Microscopy. IEEE Trans. Ind. Electron. 62(12): 7655-7664 (2015) - 2013
- [j7]Jing Hou, Lianqing Liu, Zhiyu Wang, Zhidong Wang, Ning Xi, Yuechao Wang, Chengdong Wu, Zaili Dong, Shuai Yuan:
AFM-Based Robotic Nano-Hand for Stable Manipulation at Nanoscale. IEEE Trans Autom. Sci. Eng. 10(2): 285-295 (2013) - [c35]Yangjie Wei, Chengdong Wu, Zaili Dong, Yuqing He:
Modeling of nano piezoelectric actuator based on block matching algorithm with optimal block size. ICIA 2013: 659-664 - [c34]Longhai Li, Xiaojun Tian, Zaili Dong, Lianqing Liu, Osamu Tabata, Wen Jung Li:
Manipulation of DNA origami nanotubes in liquid using a programmable tapping mode AFM. NEMS 2013: 56-59 - [c33]Wenfeng Liang, Bin Liu, Lianqing Liu, Zaili Dong, Gwo-Bin Lee, Wen Jung Li, Weijing Zhang:
Dynamic separation of b-lymphoma cells from red blood cells using optically-induced electrokinetics. NEMS 2013: 1253-1256 - 2012
- [j6]Zengxu Zhao, Xiaojun Tian, Zaili Dong, Ke Xu:
Fabrication of Nanoelectrodes by Cutting Carbon Nanotubes Assembled by Di-Electrophoresis Based on Atomic Force Microscope. Int. J. Intell. Mechatronics Robotics 2(3): 1-13 (2012) - [j5]Wenfeng Liang, Shue Wang, Zaili Dong, Gwo-Bin Lee, Wen Jung Li:
Optical Spectrum and Electric Field Waveform Dependent Optically-Induced Dielectrophoretic (ODEP) Micro-Manipulation. Micromachines 3(2): 492-508 (2012) - [c32]Zenglei Liu, Niandong Jiao, Zhidong Wang, Zaili Dong:
Analysis on 3-Dimensional spatial electric field of AFM based anodic oxidation. NEMS 2012: 547-552 - 2011
- [j4]Shue Wang, Wenfeng Liang, Zaili Dong, Vincent G. B. Lee, Wen Jung Li:
Fabrication of Micrometer- and Nanometer-Scale Polymer Structures by Visible Light Induced Dielectrophoresis (DEP) Force. Micromachines 2(4): 431-442 (2011) - [c31]Mi Li, Lianqing Liu, Ning Xi, Yuechao Wang, Zaili Dong, Guangyong Li, Osamu Tabata, Xiubin Xiao, Weijing Zhang:
Imaging and measuring the protein distribution of lymphoma cells using atomic force microscopy. NEMS 2011: 188-191 - [c30]Shue Wang, Zaili Dong, Yanli Qu, Lei Zhou, Zhu Liu, Wenli Zhou, Shenglin Jiang, Yan Yu, Vincent G. B. Lee, Wen Jung Li:
Development of a novel ODEP chip using polymer photoconductive material and FTO electrode. NEMS 2011: 275-280 - [c29]Zhiqian Wang, Dong Wang, Niandong Jiao, Steve Tung, Zaili Dong:
A nanochannel system fabricated by MEMS microfabrication and atomic force microscopy. NEMS 2011: 372-376 - [c28]Wenfeng Liang, Shue Wang, Yanli Qu, Zaili Dong, Gwo-Bin Lee, Wen Jung Li:
An equivalent electrical model for numerical analyses of ODEP manipulation. NEMS 2011: 825-830 - [c27]Zhiyu Wang, Lianqing Liu, Jing Hou, Zhidong Wang, Shuai Yuan, Zaili Dong:
Virtual nano-hand: A stable pushing strategy in AFM based sensorless nanomanipulation. ROBIO 2011: 1409-1414 - [c26]Shuai Yuan, Lianqing Liu, Zhidong Wang, Ning Xi, Yuechao Wang, Zaili Dong, Zhiyu Wang, Zhibo Wang:
Feature referenced tip localization enhanced by probability motion model for AFM based nanomanipulations. ROBIO 2011: 1421-1426 - [c25]Shue Wang, Wenfeng Liang, Yanli Qu, Zaili Dong, Vincent G. B. Lee, Wen Jung Li:
Towards automated micro-/nano-scale manipulation, separation, assembly, and fabrication by optically-induced dielectrophoresis. ROBIO 2011: 2403-2404 - 2010
- [j3]Yiyang Liu, Yuechao Wang, Peng Yu, Zaili Dong:
Design, Modeling, and Micromanipulation Experiments of a Novel 2-d Micro Force Sensor. Int. J. Inf. Acquis. 7(1): 51-57 (2010) - [j2]Yiyang Liu, Yuechao Wang, Peng Yu, Zaili Dong:
Infinite Dimension Modeling of a Novel Microforce Sensor and the Application in Micromanipulation. Int. J. Inf. Acquis. 7(4): 299-307 (2010) - [c24]Mi Li, Lianqing Liu, Ning Xi, Yuechao Wang, Zaili Dong, Guangyong Li, Xiubin Xiao, Shunzong Yuan, Weijing Zhang:
An experimental study on imaging burkitt's lymphoma cells by atomic force microscope. NEMS 2010: 262-266 - [c23]Jing Hou, Zhidong Wang, Lianqing Liu, Yongliang Yang, Zaili Dong, Chengdong Wu:
Modeling and analyzing nano-particle pushing with an AFM by using nano-hand strategy. NEMS 2010: 518-523 - [c22]Zhikun Zhan, Yanli Qu, Shuai Wang, Zaili Dong, Balaji Srinivasan, Steve Tung, Wen Jung Li:
Investigation of a PDMS based micromixer for heterogeneous immunoassays of insulin. NEMS 2010: 616-619 - [c21]Zhiqian Wang, Steve Tung, Niandong Jiao, Zaili Dong:
Nanochannels on silicon oxide surface fabricated by atomic force microscopy. NEMS 2010: 637-640 - [c20]Ming Lin Li, Siu Ling Leung, Yanli Qu, Zaili Dong, Wen Jung Li:
Dielectrophoretic assembly of 2 nm gold particles for nano-sensing applications. NEMS 2010: 932-936 - [c19]Zhiyu Wang, Lianqing Liu, Zhidong Wang, Zaili Dong, Shuai Yuan:
An extended PI model for hysteresis and creep compensation in AFM based nanomanipulation. ROBIO 2010: 992-997
2000 – 2009
- 2009
- [c18]Lianqing Liu, Ning Xi, Yuechao Wang, Zaili Dong:
Feature referenced tip localization in robotic nano manipulation. IROS 2009: 1351-1356 - [c17]Haibo Yu, Niandong Jiao, Zaili Dong, Yanli Qu, Wen Jung Li, Yuechao Wang:
Nanoscale welding by AFM tip induced electric field. NEMS 2009: 116-120 - [c16]Yanli Qu, Zaili Dong, Steve C. H. Tung, Wen Jung Li:
Experimental investigation on the dynamic response of thermal EG-CNT flow sensors. NEMS 2009: 813-817 - 2008
- [c15]Lianqing Liu, Ning Xi, Yuechao Wang, Zaili Dong, Uchechukwu C. Wejinya:
Landmark based sensing and positioning in robotic nano manipulation. ROBIO 2008: 37-42 - 2007
- [j1]Xiaojun Tian, Yuechao Wang, Ning Xi, Zaili Dong, Steve Tung:
Force and Visual Information Acquisition in AFM Based Robotic Mwcnt Manipulation. Int. J. Inf. Acquis. 4(2): 107-115 (2007) - [c14]Yiyang Liu, Peng Yu, Yuechao Wang, Zaili Dong, Ning Xi:
The design and development of a mirco-force sensing device. ROBIO 2007: 77-81 - [c13]Lei Miao, Lei Zhou, Liu Zhu, Ke Qin, Wenlin Zhang, Zaili Dong, Wen Jung Li:
Design the Nano manipulation system based on AFM: A system view with force feedback research. ROBIO 2007: 82-86 - 2006
- [c12]Xiaojun Tian, Yuechao Wang, Ning Xi, Zaili Dong, Wenjung Li:
Accurate Positioning of AFM Probe for AFM Based Robotic Nanomanipulation System. IROS 2006: 1910-1914 - 2005
- [c11]Feng Zhu, Jing Zhou, Yingming Hao, Zaili Dong:
Derivation of camera parameters based on geometric meaning. ROBIO 2005: 468-471 - [c10]Yan L. Qu, Mingyang Zhao, Zaili Dong, Yuechao Wang, Yuanyuan Zou:
Experimental study of a remote-controlled police dogbot. ROBIO 2005: 533-537 - 2004
- [c9]Xue-Nan Sun, Xue-Zhang Liang, Zaili Dong, Xiaojun Tian:
Analysis and improvement of Marr's algorithm for image reconstruction. ICARCV 2004: 80-84 - [c8]Liping Zhang, Shugen Ma, Bin Li, Zheng Zhang, Zaili Dong, Binggang Cao:
Position-sensing based a new docking system of RPRS. ICARCV 2004: 278-282 - [c7]Xiaojun Tian, Ning Xi, Yuechao Wang, Zaili Dong, Wenjung Li:
Kinematics modeling and system errors analysis for an AFM based nanomanipulator. ICARCV 2004: 1581-1586 - [c6]Lei Miao, Zaili Dong:
Displacement Calibration of a Micro Robotic Gripper for Manipulation of Biological Cells. ROBIO 2004: 296-300 - [c5]Tongying Guo, Daokui Qu, Zaili Dong:
Research of Path Planning for Polishing Robot Based on Improved Genetic Algorithm. ROBIO 2004: 334-338 - [c4]Zhihua Liu, Yangjie Wei, Ho-Yin Chan, Wenjung Li, Zaili Dong, Yuechao Wang:
Structural and Thermal Analysis of a Thermally Actuated Polymer Micro Robotic Gripper. ROBIO 2004: 470-473 - [c3]Xiaojun Tian, Lianqing Liu, Niandong Jiao, Ning Xi, Yuechao Wang, Zaili Dong:
A Nanomanipulation System Based on A Sample-Scanning AFM. ROBIO 2004: 623-628 - 2003
- [c2]Chuan Zhou, Da-Long Tan, Feng Zhu, Zaili Dong:
A planar homography estimation method for camera calibration. CIRA 2003: 424-429 - [c1]Maoyuan Cui, Zaili Dong, Yantao Tian:
A centralized tele-teaching system for industrial robots using virtual reality. CIRA 2003: 943-949
Coauthor Index
aka: Wenjung Li
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