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Understanding patient preference in prosthetic ankle stiffness
by
Wontorcik, Leslie
, Rouse, Elliott J.
, Ingraham, Kimberly A.
, Clites, Tyler R.
, Shepherd, Max K.
in
Adaptive technology
/ Amputation
/ Amputees
/ Analysis
/ Ankle
/ Artificial legs
/ Beliefs, opinions and attitudes
/ Biomechanics
/ Biomedical and Life Sciences
/ Biomedical Engineering and Bioengineering
/ Biomedicine
/ Body mass
/ Equipment and supplies
/ Gait
/ Kinematics
/ Mechanical properties
/ Metabolic rate
/ Metabolism
/ Neurology
/ Neurosciences
/ Patient satisfaction
/ Personal preferences (Social sciences)
/ Physiological aspects
/ Physiological factors
/ Physiology
/ Prostheses
/ Prosthetics
/ Rehabilitation Medicine
/ Robotics
/ Stiffness
/ Treadmills
/ Walking
2021
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Understanding patient preference in prosthetic ankle stiffness
by
Wontorcik, Leslie
, Rouse, Elliott J.
, Ingraham, Kimberly A.
, Clites, Tyler R.
, Shepherd, Max K.
in
Adaptive technology
/ Amputation
/ Amputees
/ Analysis
/ Ankle
/ Artificial legs
/ Beliefs, opinions and attitudes
/ Biomechanics
/ Biomedical and Life Sciences
/ Biomedical Engineering and Bioengineering
/ Biomedicine
/ Body mass
/ Equipment and supplies
/ Gait
/ Kinematics
/ Mechanical properties
/ Metabolic rate
/ Metabolism
/ Neurology
/ Neurosciences
/ Patient satisfaction
/ Personal preferences (Social sciences)
/ Physiological aspects
/ Physiological factors
/ Physiology
/ Prostheses
/ Prosthetics
/ Rehabilitation Medicine
/ Robotics
/ Stiffness
/ Treadmills
/ Walking
2021
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Do you wish to request the book?
Understanding patient preference in prosthetic ankle stiffness
by
Wontorcik, Leslie
, Rouse, Elliott J.
, Ingraham, Kimberly A.
, Clites, Tyler R.
, Shepherd, Max K.
in
Adaptive technology
/ Amputation
/ Amputees
/ Analysis
/ Ankle
/ Artificial legs
/ Beliefs, opinions and attitudes
/ Biomechanics
/ Biomedical and Life Sciences
/ Biomedical Engineering and Bioengineering
/ Biomedicine
/ Body mass
/ Equipment and supplies
/ Gait
/ Kinematics
/ Mechanical properties
/ Metabolic rate
/ Metabolism
/ Neurology
/ Neurosciences
/ Patient satisfaction
/ Personal preferences (Social sciences)
/ Physiological aspects
/ Physiological factors
/ Physiology
/ Prostheses
/ Prosthetics
/ Rehabilitation Medicine
/ Robotics
/ Stiffness
/ Treadmills
/ Walking
2021
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Understanding patient preference in prosthetic ankle stiffness
Journal Article
Understanding patient preference in prosthetic ankle stiffness
2021
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Overview
Background
User preference has the potential to facilitate the design, control, and prescription of prostheses, but we do not yet understand which physiological factors drive preference, or if preference is associated with clinical benefits.
Methods
Subjects with unilateral below-knee amputation walked on a custom variable-stiffness prosthetic ankle and manipulated a dial to determine their preferred prosthetic ankle stiffness at three walking speeds. We evaluated anthropomorphic, metabolic, biomechanical, and performance-based descriptors at stiffness levels surrounding each subject’s preferred stiffness.
Results
Subjects preferred lower stiffness values at their self-selected treadmill walking speed, and elected to walk faster overground with ankle stiffness at or above their preferred stiffness. Preferred stiffness maximized the kinematic symmetry between prosthetic and unaffected joints, but was not significantly correlated with body mass or metabolic rate.
Conclusion
These results imply that some physiological factors are weighted more heavily when determining preferred stiffness, and that preference may be associated with clinically relevant improvements in gait.
Publisher
BioMed Central,BioMed Central Ltd,Springer Nature B.V,BMC
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