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Department of Bioengineering.
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Evaluation of the errors in kinematic parameters occurring by the use of skin markers in gait analysis, due to soft tissue movements relative to the skeletal system
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Evaluation of skin strain during knee movement using 3D motion analysis
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Novel polymers to encourage rapid recovery of arterial function following coronary stenting
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Designing a comprehensive system for analysis of handwriting biomechanics in relation to neuromotor control of handwriting
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The development of a novel adaptive seating system for children with neuromuscular disorders
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Conductive polymers, their use and possible application as drug-eluting stent coatings
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Sensory function, use in assessment of spinal cord function and its role in neural control of walking in humans
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Load analysis of ankle foot orthoses during gait
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The effect a cosmetic cover has on the swing phase of a transfemoral prosthesis during level walking, a pilot study
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Three dimensional biomechanics of the hand and wrist in precision grip
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Development of a novel indentation device suitable for arthroscopic evaluation of articular cartilage
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Shared control between man and machine in brain computer interfaces
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Validation of an ultrasound-based navigation system for the assessment of femur anatomy
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Characterising hand movements with high-density surface electromyography
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Extracting signatures from muscle activity data for control of myolectric prosthesis
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Smart phones as medical devices
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Extracting speed signatures from gait data
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Optimisation and mechanistic assessment of an oral influenza vaccine
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Development of a method to increase the strength of collagen gels for tissue engineering by plastic compression
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Prediction of the hip joint centre from externally placed markers in gait analysis studies
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