References
- Hyeung-Sik Choi, Won-Hyun Na, Dong-Wan Kang, Hyung-Suk Kang, Ji-Gwang Jeon and Hyun-Sik Kim, "Development of an In-Pipe Inspection and Cleaning Robot", Journal of the Korean Society of Marine Engineering VOL. 33, NO. 5, pp. 662-671, 2009, 7 https://doi.org/10.5916/jkosme.2009.33.5.662
- Chan Hun Park and Kyoung Taik Park, 'Design and Control of Industrial Dual Arm Robot', Journal of the Korean Society for Precision Engineering VOL. 25, NO. 11, pp. 58-65, 2008, 11
- Ozer Unluhisarcikli, Maciej Pietrusinski, Brian Weinberg, Paolo Bonato and Constantinos Mavroidis, "Design and Control of a Robotic Lower Extremity Exoskeleton for Gait Rehabilitation", 2011 IEEE/RSJ International Conference on Intelligent Robots and Systems September 25-30, 2011. San Francisco, CA, USA
- Ping Wang, K.H. Low and Adela Tow, "Synchronized Walking Coordination for Impact-less Footpad Contact of an Overground Gait Rehabilitation System: NaTUre-gaits", 2011 IEEE International Conference on Rehabilitation Robotics Rehab Week Zurich, ETH Zurich Science City, Switzerlan, June 29-July 1, 2011
- Jan F. Veneman, Rik Kruidhof, Edsko E. G. Hekman, Ralf Ekkelenkamp, Edwin H. F. Van Asseldonk, and Herman van der Kooij, "Design and Evaluation of the LOPES Exoskeleton Robot for Interactive Gait Rehabilitation", IEEE TRANSACTIONS ON NEURAL SYSTEMS AND REHABILITATION ENGINEERING, VOL. 15, NO. 3, SEPTEMBER 2007
- Sai K. Banala, Seok Hun Kim and Sunil K. Agrawal, and John P. Scholz, "Robot Assisted Gait Training With Active Leg Exoskeleton (ALEX)", IEEE Transactions on Neural System and Rehabilitation Engineering, Vol. 17, NO. 1, February 2009.
- Kyle N. Winfree, Paul Stegall and Sunil K. Agrawal, "Design of a Minimally Constraining, Passively Supported Fait Training Exoskeleton: ALEX II", 2011 IEEE International Conference on Rehabilitation Robotics Rehab Week Zurich, ETH Zurich Science City, Switzerlan, June 29-July 1, 2011
- Alexander Duschau-Wicke, Joachim von Zitzewitz, Lars Lunenburger and Robert Riener, "Path Control: A Method for Patient-Cooperative Robot-Aided Gait Rehabilitation", IEEE Transactions on Neural System and Rehabilitation Engineering, VOL. 18, NO. 1, February 2010
- Donald A. Neumann, Kinesiology of the Musculoskeletal system Foundations for physical rehabilitation, Mosby
- Donald A. Neumann, "KINESIOLOGY of the MUSCULOSKELETAL SYSTEM, Foundations for Physical Rehabilitation", Mosby, p557
- David A. winters, Biomechanics and motor control of human movement, fourth edition, WILEY, 2009
- Ki-Sang Lee, Kwang-Yong Kim, Jae-ho Choi, "High-Efficiency Design of Axial Flow Fan through Shape Optimization of Airfoil", Journal of Fluid Machinery, VOL. 11, NO. 2, pp. 46-54, 2008
- THK, "Ball Screw THK General Catalog", pp. A15.49-A15.60
- Adam B. Zoss, H. Kazerooni, Member, IEEE, and Andrew Chu, "Biomechanical Design of the Berkeley Lower Extremity Exoskeleton (BLEEX), IEEE/ASME TRANSACTIONS ON MECHATRONICS, VOL. 11, NO. 2, APRIL 2006
- Andrew Chu, H. Kazerooni, and Adam Zoss, "On the Biomimetic Design of the Berkeley Lower Extremity Exoskeleton (BLEEX)", IEEE International Conference on Robotics and Automation Barcelona, Spain, April 2005
- Erhan Akdogan, Mehmet Arif Adli, "The design and control of a therapeutic exercise robot for lower limb rehabilitation Physiotherabot", Mechatronics 21 (2011) 509-522 https://doi.org/10.1016/j.mechatronics.2011.01.005
- Kyu-Jung Kim, Min-Sung Kang, Youn-Sung Choi, Jungsoo Han, and Changsoo Han, "Conceptualization of an exoskeleton Continuous Passive Motion(CPM) device using a link structure", 2011 IEEE International conference on Rehabilitation Robotics Rehab Week Zurich, ETH Zurich Science City, Switzerland, June 29-July 1, 2011
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