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Mechanisms of Gait Asymmetry Due to Push-Off Deficiency in Unilateral Amputees.Measurement of foot placement and its variability with inertial sensors.Systematic variation of prosthetic foot spring affects center-of-mass mechanics and metabolic cost during walkingThe effects of a controlled energy storage and return prototype prosthetic foot on transtibial amputee ambulation.Influence of contextual task constraints on preferred stride parameters and their variabilities during human walking.Mechanical and energetic consequences of rolling foot shape in human walkingRedirection of center-of-mass velocity during the step-to-step transition of human walking.Validity and repeatability of inertial measurement units for measuring gait parameters.A unified perspective on ankle push-off in human walking.Novel method to evaluate angular stiffness of prosthetic feet from linear compression tests.The role of series ankle elasticity in bipedal walking.Sensitivity of biomechanical outcomes to independent variations of hindfoot and forefoot stiffness in foot prostheses.The advantages of a rolling foot in human walking.The stabilizing properties of foot yaw in human walking.Dynamic arm swinging in human walking.Design and Validation of a Semi-Active Variable Stiffness Foot ProsthesisAnalyzing Gait in the Real World Using Wearable Movement Sensors and Frequently Repeated Movement PathsReconstruction of body motion during self-reported losses of balance in community-dwelling older adults
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description
hulumtues
@sq
onderzoeker
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researcher
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հետազոտող
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name
Peter G. Adamczyk
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Peter G. Adamczyk
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Peter G. Adamczyk
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Peter G. Adamczyk
@nl
Peter G. Adamczyk
@sl
بيتر جي. أدامشيك
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type
label
Peter G. Adamczyk
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Peter G. Adamczyk
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Peter G. Adamczyk
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Peter G. Adamczyk
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Peter G. Adamczyk
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بيتر جي. أدامشيك
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Peter G. Adamczyk
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Peter G. Adamczyk
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Peter G. Adamczyk
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Peter G. Adamczyk
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Peter G. Adamczyk
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Peter G. Adamczyk
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بيتر جي. أدامشيك
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P1053
P-5928-2014
P106
P1153
15064977000
P21
P31
P3829
P3835
peter-gabriel-adamczyk
P496
0000-0001-5374-7691