首页> 美国卫生研究院文献>Frontiers in Neuroscience >Bi-articular Knee-Ankle-Foot Exoskeleton Produces Higher Metabolic Cost Reduction than Weight-Matched Mono-articular Exoskeleton
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Bi-articular Knee-Ankle-Foot Exoskeleton Produces Higher Metabolic Cost Reduction than Weight-Matched Mono-articular Exoskeleton

机译:双关节膝盖-脚踝-脚外骨骼比重量匹配的单关节外骨骼产生更高的代谢成本降低

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摘要

The bi-articular m. gastrocnemius and the mono-articular m. soleus have different and complementary functions during walking. Several groups are starting to use these biological functions as inspiration to design prostheses with bi-articular actuation components to replace the function of the m. gastrocnemius. Simulation studies indicate that a bi-articular configuration and spring that mimic the m. gastrocnemius could be beneficial for orthoses or exoskeletons. Our aim was to test the effect of a bi-articular and spring configuration that mimics the m. gastrocnemius and compare this to a no-spring and mono-articular configuration. We tested nine participants during walking with knee-ankle-foot exoskeletons with dorsally mounted pneumatic muscle actuators. In the bi-articular plus spring condition the pneumatic muscles were attached to the thigh segment with an elastic cord. In the bi-articular no-spring condition the pneumatic muscles were also attached to the thigh segment but with a non-elastic cord. In the mono-articular condition the pneumatic muscles were attached to the shank segment. We found the highest reduction in metabolic cost of 13% compared to walking with the exoskeleton powered-off in the bi-articular plus spring condition. Possible explanations for this could be that the exoskeleton delivered the highest total positive work in this condition at the ankle and the knee and provided more assistance during the isometric phase of the biological plantarflexors. As expected we found that the bi-articular conditions reduced m. gastrocnemius EMG more than the mono-articular condition but this difference was not significant. We did not find that the mono-articular condition reduces the m. soleus EMG more than the bi-articular conditions. Knowledge of specific effects of different exoskeleton configurations on metabolic cost and muscle activation could be useful for providing customized assistance for specific gait impairments.
机译:双关节腓肠肌和单关节m。比目鱼在行走过程中具有不同和互补的功能。几个小组开始利用这些生物学功能作为灵感来设计具有双关节驱动组件的假体,以替代m的功能。腓肠肌。仿真研究表明,双关节结构和弹簧模仿了m。腓肠肌可能对矫形器或外骨骼有益。我们的目的是测试模仿m的双关节和弹簧构型的效果。腓肠肌并将其与无弹簧和单关节构型进行比较。我们在步行过程中对9名参与者进行了测试,他们使用带背侧安装的气动肌肉促动器的膝-踝-脚外骨骼。在双关节加弹簧的情况下,用弹性绳将气动肌肉附着到大腿部分。在双关节无弹簧的情况下,气动肌肉也附着在大腿部分,但带有无弹性的绳索。在单关节情况下,气动肌肉附着在小腿部分。我们发现,在双关节加弹簧的情况下,与外骨骼断电走路相比,代谢成本最高降低了13%。对此的可能解释可能是在这种情况下,外骨骼在脚踝和膝盖处提供了最高的总正功,并在生物plant屈的等轴测阶段提供了更多的帮助。如预期的那样,我们发现双关节状态降低了m。腓肠肌肌电图多于单关节病,但这种差异并不明显。我们没有发现单关节情况使m减小。比目鱼肌电图多见于双关节病。了解不同外骨骼构型对代谢成本和肌肉激活的特定作用可能有助于为特定步态障碍提供定制化帮助。

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