Biomedical Engineering Reference
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Dewald J. P. A. and Beer R. F. Abnormal joint torque patterns in the paretic upper limb of
subjects with hemiparesis, Muscle Nerve 24 , 273-83 (2001).
Beer R. F., Dewald J. P. A., Dawson M. L. and Rymer W. Z., Target-dependent differences
between free and constrained arm movements in chronic hemiparesis, Exp Brain Res ,
156 , 458-470 (2004).
Ellis M. D., Holubar B. G., Acosta A. M., Beer R. F. and Dewald J. P. A. Modifiability of
abnormal isometric elbow and shoulder joint torque coupling after stroke, Muscle Nerve
32 , 170-178 (2005).
Dewald J. P. A., Pope P. S., Given J. D., Buchanan T. S. and Rymer W. Z., Abnormal muscle
coactivation patterns during isometric torque generation at the elbow and shoulder in
hemiparetic subjects, Brain , 118 , 495-510 (1995).
Lum P. S., Burgar C. G. and Shor P. C. Evidence for strength imbalances as a significant
contributor to abnormal synergies in hemiparetic subjects, Muscle Nerve, 27 , 211-21
(2003).
Schwerin S, Dewald J. P. A., Haztl M, Jovanovich S, Nickeas M. and MacKinnon C.,
Ipsilateral versus contralateral cortical motor projections to a shoulder adductor in
chronic hemiparetic stroke: implications for the expression of arm synergies, Exp Brain
Res ., 185 , 509-19 (2008).
Sakatani, K, Murata, Y, Fujiwara, N, Hoshino, T, Nakamura, S, Kano, T., et al .Comparison
of blood-oxygen-level-dependent functional magnetic resonance imaging and near-
infrared spectroscopy recording during functional brain activation in patients with
stroke and brain tumors, J. Biomed. Opt , (2007).
KungB.C,JuM.S,LinC.C.KandChenS.M.Clinicalassessmentofforearmprona-
tion/supination torque in stroke patients, J. Med. Biol. Eng. , 25(1) , 39-43 (2005).
Krebs H. I., Volpe B. T., Williams D, Celestino J, Charles S. K., Lynch D. and Hogan N.
Robot-aided neurorehabilitation: A Robot for wrist rehabilitation, IEEE Trans Neural
Syst Rehabil Eng , 15 (3), 327-335 (2007).
Masia, L., Krebs, H. I., Cappa, P. and Hogan, N. Whole-arm rehabilitation following stroke:
Hand module, Biomed. Robot. & Biomechatron. , pp. 1085-1089 (2006).
Hong, C. S., Ju, M. S. and Lin, C. C. K.(2006) Development of a robot for neruo-rehabilitation
of hand, Intl. Symposium BME , Taipei, Taiwan, p.180.
Shih M. C., Lin C. C. K. and Ju, M. S. A study of brain-computer interface (BCI) controlled
prosthetic hand, XXI Congr. Intl. Soc. Biomech. , Taipei, Taiwan, (2007).
WolpawJ.R.,BirbaumerN,HeetderksW.J.,McFarlandD.J.,PeckhamP.H.,ShalkG,
Donchin E, Quatrano L. A., Robinson C. J. and Vaugham TM. Brain-computer interface
technology: A review of the first international meeting IEEE Trans Rehab Eng ., 8 ,
164-173 (2000).
Chen, C. W., Lin, C. C. K. and Ju, M. S. Hand orthosis controlled by using brain-computer
interface, J. Med. Biol. Eng. , 29 (5), 234-241,(2009).
Krebs H. I., Palazzolo J. J., Dipietro L, Ferraro M, Krol J, Rannekleiv K, Volpe B. T.
and Hogan N. Rehabilitation robotics: Performance-based progressive robot-assisted
therapy, Auton. Robot. , 15 (1), 7-20 (2003).
 
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