Mechanical energy and power flow of the upper extremity in manual wheelchair propulsion.
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[1] Lucas van der Woude,et al. Biomedical aspects of manual wheelchair propulsion : the state of the art II , 1999 .
[2] C. Whitsett. SOME DYNAMIC RESPONSE CHARACTERISTICS OF WEIGHTLESS MAN , 1962 .
[3] D. Winter. A new definition of mechanical work done in human movement. , 1979, Journal of applied physiology: respiratory, environmental and exercise physiology.
[4] D. Winter. Energy generation and absorption at the ankle and knee during fast, natural, and slow cadences. , 1983, Clinical orthopaedics and related research.
[5] JoAnne K. Gronley,et al. Shoulder Joint Kinetics During the Push Phase of Wheelchair Propulsion , 1998, Clinical orthopaedics and related research.
[6] H E Veeger,et al. Within-cycle characteristics of the wheelchair push in sprinting on a wheelchair ergometer. , 1991, Medicine and science in sports and exercise.
[7] R N Hinrichs,et al. Adjustments to the segment center of mass proportions of Clauser et al. (1969). , 1990, Journal of biomechanics.
[8] S. D. Shimada,et al. Wheelchair pushrim kinetics: body weight and median nerve function. , 1999, Archives of physical medicine and rehabilitation.
[9] J. Dapena. A method to determine the angular momentum of a human body about three orthogonal axes passing through its center of gravity. , 1978, Journal of biomechanics.
[10] O. Bar-or,et al. Ability of mechanical power estimations to explain differences in metabolic cost of walking and running among children , 1997 .
[11] H E Veeger,et al. Effect of handrim velocity on mechanical efficiency in wheelchair propulsion. , 1992, Medicine and science in sports and exercise.
[12] R. Burdett,et al. Comparison of mechanical work and metabolic energy consumption during normal gait , 1983, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[13] D. Winter,et al. Mechanical energy generation, absorption and transfer amongst segments during walking. , 1980, Journal of biomechanics.
[14] R A Cooper,et al. Methods for determining three-dimensional wheelchair pushrim forces and moments: a technical note. , 1997, Journal of rehabilitation research and development.
[15] R.A. Cooper,et al. SMART/sup Wheels/: development and testing of a system for measuring manual wheelchair propulsion dynamics , 1993, IEEE Transactions on Biomedical Engineering.
[16] S. D. Shimada,et al. Three-dimensional pushrim forces during two speeds of wheelchair propulsion. , 1997, American journal of physical medicine & rehabilitation.
[17] M. R. Yeadon,et al. The appropriate use of regression equations for the estimation of segmental inertia parameters. , 1989, Journal of biomechanics.
[18] R. Cooper,et al. Maximal exercise response of paraplegic wheelchair road racers , 1992, Paraplegia.
[19] Morrison Jb,et al. Kinematic symmetry of the lower limbs. , 1984 .
[20] D A Winter,et al. Bilateralism of EMG profiles in human locomotion. , 1986, American journal of physical medicine.
[21] H E Veeger,et al. Wheelchair racing: effects of rim diameter and speed on physiology and technique. , 1988, Medicine and science in sports and exercise.
[22] R N Robertson,et al. Pushrim forces and joint kinetics during wheelchair propulsion. , 1996, Archives of physical medicine and rehabilitation.
[23] G. G. Stokes. "J." , 1890, The New Yale Book of Quotations.
[24] Role of mechanical power estimates in the O2 cost of walking in children with cerebral palsy. , 1999, Medicine and science in sports and exercise.
[25] F. Prince,et al. Symmetry and limb dominance in able-bodied gait: a review. , 2000, Gait & posture.
[26] F.C.T. van der Helm,et al. Shoulder modelling in rehabilitation: The power balance during wheelchair propulsion , 1999 .
[27] P A Costigan,et al. Mechanical energy patterns in gait of cerebral palsied children with hemiplegia. , 1987, Physical therapy.
[28] JoAnne K. Gronley,et al. Electromyographic activity of shoulder muscles during wheelchair propulsion by paraplegic persons. , 1996, Archives of physical medicine and rehabilitation.
[29] K N An,et al. An instrumented wheel for kinetic analysis of wheelchair propulsion. , 1998, Journal of biomechanical engineering.
[30] R H Rozendal,et al. Seat height in handrim wheelchair propulsion. , 1989, Journal of rehabilitation research and development.