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Haptic tensile forces in the direction of locomotion were used in a virtual environment to investigate the adaptation and post-adaptation effects on steady-state walking in older post-stroke (n=14) and healthy age-matched adults (n=14). Increased walking velocity was observed in both post-stroke and control groups by as much as 0.11 m/s and 0.14 m/s, respectively, as subjects adapted to walking with...
We developed a system combining haptic tensile forces in the direction of locomotion in a virtual environment to investigate its effects on steady-state walking in elderly post-stroke and age-matched controls. Chronic stroke participants (n=6) and healthy age-matched controls (n=6) increased walking velocity by as much as 22% in the stroke group and 18.5% in the control group. This was accompanied...
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