Related Experiment Videos
Active plantar-flexion above-knee prosthesis: concept and preliminary design
Prosthetics and Orthotics International
|December 1, 1985
Summary
This study presents a novel self-energized prosthetic system for above-knee amputees. It captures and stores energy from natural joint movements to power active ankle plantar-flexion, improving gait mechanics.
Area of Science:
- Biomedical Engineering
- Prosthetics and Orthotics
- Biomechanics
Background:
- Current lower limb prostheses lack the muscular function for adequate energy provision during ambulation.
- High energy demands of lower limb prostheses necessitate bulky external power sources, limiting practicality.
- Self-energized mechanisms offer a viable solution to power prosthetic devices.
Purpose of the Study:
- To develop an above-knee prosthesis with active plantar-flexion capability.
- To address the energy deficit in prosthetic lower limbs using a self-energized system.
- To improve the ambulatory mechanism by restoring natural ankle function.
Main Methods:
- Design of a self-energized system for prosthetic lower limbs.
- Integration of energy accumulation from passive knee and ankle joint movements.
- Storage of captured energy for active ankle plantar-flexion.
Main Results:
- The developed system accumulates energy during passive joint motion.
- Stored energy is utilized for active plantar-flexion at the ankle.
- This approach bypasses the need for heavy external power sources.
Conclusions:
- Self-energized systems are a promising alternative for powering lower limb prostheses.
- Active plantar-flexion in above-knee prostheses can be achieved through stored joint energy.
- This technology enhances prosthetic functionality by mimicking natural gait energy patterns.