Geeroms J, Flynn L, Jimenez-Fabian R, Vanderborght B, Lefeber D
Vrije Universiteit Brussel, Department of Mechanical Engineering, Pleinlaan 2, 1050 Brussels, Belgium. Flanders Make, Strategic Research Centre Manufacturing Industry, Pleinlaan 2, 1050 Brussels, Belgium.
Bioinspir Biomim. 2017 Feb 3;12(2):026002. doi: 10.1088/1748-3190/aa575c.
There are disadvantages to existing damping knee prostheses which cause an asymmetric gait and higher metabolic cost during level walking compared to non-amputees. Most existing active knee prostheses which could benefit the amputees use a significant amount of energy and require a considerable motor. In this work, a novel semi-active actuator with a lockable parallel spring for a prosthetic knee joint has been developed and tested. This actuator is able to provide an approximation of the behavior of a healthy knee during most of the gait cycle of level walking. This actuator is expanded with a series-elastic actuator to mimic the full gait cycle and enable its use in other functional tasks like stair climbing and sit-to-stance. The proposed novel actuator reduces the energy consumption for the same trajectory with respect to a compliant or directly-driven prosthetic active knee joint and improves the approximation of healthy knee behavior during level walking compared to passive or variable damping knee prostheses.
现有的阻尼膝关节假肢存在一些缺点,与非截肢者相比,这些缺点会导致不对称步态以及在平地上行走时更高的代谢成本。大多数现有的可使截肢者受益的主动膝关节假肢消耗大量能量,并且需要相当大的电机。在这项工作中,一种用于假肢膝关节的带有可锁定平行弹簧的新型半主动致动器已被开发并测试。该致动器能够在平地上行走的大部分步态周期内近似健康膝关节的行为。该致动器与串联弹性致动器相结合,以模拟完整的步态周期,并使其能够用于其他功能任务,如爬楼梯和从坐姿到站姿。与柔顺或直接驱动的假肢主动膝关节相比,所提出的新型致动器在相同轨迹下降低了能量消耗,并且与被动或可变阻尼膝关节假肢相比,在平地上行走时更接近健康膝关节的行为。