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Search Results to Alena Marie Grabowski

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One or more keywords matched the following items that are connected to Grabowski, Alena

Item TypeName
Academic Article Running with horizontal pulling forces: the benefits of towing.
Academic Article The fastest runner on artificial legs: different limbs, similar function?
Academic Article Running-specific prostheses limit ground-force during sprinting.
Academic Article Effects of independently altering body weight and body mass on the metabolic cost of running.
Academic Article Effects of velocity and weight support on ground reaction forces and metabolic power during running.
Academic Article Counterpoint: Artificial legs do not make artificially fast running speeds possible.
Academic Article Leg stiffness of sprinters using running-specific prostheses.
Concept Running
Academic Article Dynamic stability of running: the effects of speed and leg amputations on the maximal Lyapunov exponent.
Academic Article Optimal starting block configuration in sprint running; a comparison of biological and prosthetic legs.
Academic Article Effect of running speed and leg prostheses on mediolateral foot placement and its variability.
Academic Article Older Runners Retain Youthful Running Economy despite Biomechanical Differences.
Academic Article Maximum-speed curve-running biomechanics of sprinters with and without unilateral leg amputations.
Academic Article Characterizing the Mechanical Properties of Running-Specific Prostheses.
Academic Article Reduced prosthetic stiffness lowers the metabolic cost of running for athletes with bilateral transtibial amputations.
Academic Article Correction: Characterizing the Mechanical Properties of Running-Specific Prostheses.
Academic Article Prosthetic model, but not stiffness or height, affects the metabolic cost of running for athletes with unilateral transtibial amputations.
Academic Article How do prosthetic stiffness, height and running speed affect the biomechanics of athletes with bilateral transtibial amputations?
Academic Article The biomechanics of the fastest sprinter with a unilateral transtibial amputation.
Academic Article Step time asymmetry increases metabolic energy expenditure during running.
Academic Article What determines the metabolic cost of human running across a wide range of velocities?
Academic Article Athletes With Versus Without Leg Amputations: Different Biomechanics, Similar Running Economy.
Academic Article Does Metabolic Rate Increase Linearly with Running Speed in all Distance Runners?
Academic Article Neither total muscle activation nor co-activation explains the youthful walking economy of older runners.
Academic Article Vertical stiffness during one-legged hopping with and without using a running-specific prosthesis.
Academic Article Hopping with degressive spring stiffness in a full-leg exoskeleton lowers metabolic cost compared with progressive spring stiffness and hopping without assistance.
Academic Article Prosthetic model, but not stiffness or height, affects maximum running velocity in athletes with unilateral transtibial amputations.
Academic Article Prosthetic shape, but not stiffness or height, affects the maximum speed of sprinters with bilateral transtibial amputations.
Academic Article Low-pass filter cutoff frequency affects sacral-mounted inertial measurement unit estimations of peak vertical ground reaction force and contact time during treadmill running.
Grant Characterizing Ankle Function During Sloped Locomotion For Prosthesis Development
Academic Article Sacral acceleration can predict whole-body kinetics and stride kinematics across running speeds.
Academic Article Predicting continuous ground reaction forces from accelerometers during uphill and downhill running: a recurrent neural network solution.
Academic Article Running-specific prosthesis model, stiffness and height affect biomechanics and asymmetry of athletes with unilateral leg amputations across speeds.
Academic Article Evaluating the 'cost of generating force' hypothesis across frequency in human running and hopping.
Academic Article Equivalent running leg lengths require prosthetic legs to be longer than biological legs during standing.
Academic Article Author Correction: Equivalent running leg lengths require prosthetic legs to be longer than biological legs during standing.

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