Download 51.Rehabilitation Engineering by John G. Webster (Editor) PDF

By John G. Webster (Editor)

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Childress, An analysis of extended physiological proprioception as a prosthesis-control technique. J. Rehab. Res. , 21 (1): 5–18, 1984. 24. J. A. Doubler and D. S. Childress, Design and evaluation of a prosthesis control system based on the concept of extended proprioception, J. Rehab. Res. , 21 (1): 19–31, 1984. 25. J. R. Allen, A. Karchak, and V. L. Nickel, Orthotic manipulators, in Advances in External Control of Human Extremities, Belgrade, 1970. 26. V. Paeslack and H. Roesler, Design and control of a manipulator for tetraplegics, Mechanism Mach.

W. Lamb, A system of powered prostheses for severe bilateral upper limb deficiency, J. , 47B (3): 1965. ASSISTIVE DEVICES FOR MOTOR DISABILITIES 20. R. E. Prior and C. M. Scott, Proportionally controlled linear power assist device for artificial arms, Bull. Prosth. , 10 (24): 43–50, 1975. 21. M. D. O’Riain and D. T. Gibbons, Position proprioception in a microcomputer-controlled prosthesis, Med. Biol. Eng. , 25: 294–298, 1987. 22. C. W. Heckathorne, J. S. Strysik, and E. C. Grahn, Design of a modular extended physiological propioception controller for clinical applications in prosthesis control.

62. S. , Terrain adaptive quadru-track vehicle HELIOSIII. 9th Annu. Conf. Robot. Soc. , 1991, pp. 305–306 in Japanese. 63. S. Hirose, T. Sensu, and S. Aoki, The TAQT carrier: a practical terrain-adaptive quadru-track carrier robot, in Proc. IEEE/RSJ Int. Conf. , 1992, pp. 2068–2073. 64. M. H. Raibert, Legged Robots that Balance. MIT Press, Cambridge, MA, 1985. 65. S. Hirose, A study of design and control of a quadruped walking. Int. J. , 3 (2): 113–133, 1984. 66. K. J. , Configuration design of the adaptive suspension vehicle, Int.

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