AI·Robotics R&D Group, Korea Institute of Industrial Technology, Ansan, 15588, Republic of Korea.
School of Korea Institute of Industry Technology, Robotics and Virtual Engineering, University of Science and Technology, Ansan, 15588, Republic of Korea.
J Neuroeng Rehabil. 2023 Oct 20;20(1):140. doi: 10.1186/s12984-023-01261-1.
Foot drop is a neuromuscular disorder that causes abnormal gait patterns. This study developed a pneumatically powered ankle-foot orthosis (AFO) to improve the gait patterns of patients with foot drop. We hypothesized that providing unilateral ankle dorsiflexion assistance during the swing phase would improve the kinematics and spatiotemporal gait parameters of such patients. Accordingly, this study aims to examine the efficacy of the proposed assistance system using a strategy for joint kinematics and spatiotemporal gait parameters (stride length, swing velocity, and stance phase ratio). The analysis results are expected to provide knowledge for better design and control of AFOs in patients with foot drop.
Ten foot drop patients with hemiparesis (54.8 y ± 14.1 y) were fitted with a custom AFO with an adjustable calf brace and portable air compressor for ankle dorsiflexion assistance in the gait cycle during the swing phase. All subjects walked under two different conditions without extensive practice: (1) barefoot and (2) wearing a powered AFO. Under each condition, the patients walked back and forth on a 9-m track with ten laps of level ground under the supervision of licensed physical therapists. The lower-limb joint and trunk kinematics were acquired using 12 motion-capture cameras.
We found that kinematic asymmetry decreased in the three lower-limb joints after ankle dorsiflexion assistance during the swing phase. The average ankle-joint angle increased after using the AFO during the entire gait cycle. Similarly, the knee-joint angle showed a slight increase while using the AFO, leading to a significantly decreased standard deviation within patients. Conversely, the hip-joint angle showed no significant improvements with assistance. While several patients exhibited noticeably lower levels of asymmetry, no significant changes were observed in the average asymmetry of the swing velocity difference between the affected and unaffected sides while using the AFO.
We experimentally validated that ankle dorsiflexion assistance during the swing phase temporarily improves gait asymmetry in foot-drop patients. The experimental results also prove the efficacy of the developed AFO for gait assistance in foot-drop patients.
足下垂是一种神经肌肉疾病,会导致异常的步态模式。本研究开发了一种气动动力踝足矫形器(AFO),以改善足下垂患者的步态模式。我们假设在摆动相提供单侧踝关节背屈辅助会改善此类患者的运动学和时空步态参数。因此,本研究旨在通过关节运动学和时空步态参数(步长、摆动速度和站立相比例)的策略来检验所提出的辅助系统的效果。分析结果有望为更好地设计和控制足下垂患者的 AFO 提供知识。
十名偏瘫足下垂患者(54.8 岁±14.1 岁)佩戴了带有可调节小腿支具和便携式空气压缩机的定制 AFO,以在摆动相期间为踝关节背屈提供辅助,从而在步态周期中辅助行走。所有患者在没有广泛练习的两种不同情况下行走:(1)赤脚和(2)穿着动力 AFO。在每种情况下,患者在经过许可的物理治疗师监督下,在 9 米的轨道上来回走十圈平坦的地面。下肢关节和躯干运动学使用 12 个运动捕捉摄像机进行采集。
我们发现,在摆动相期间提供踝关节背屈辅助后,三个下肢关节的运动学不对称性降低。在整个步态周期中使用 AFO 后,踝关节角度的平均值增加。同样,在使用 AFO 时,膝关节角度略有增加,导致患者内的标准差显著降低。相反,髋关节角度在辅助下没有明显改善。虽然一些患者表现出明显较低的不对称性,但在使用 AFO 时,患侧和健侧摆动速度差异的平均不对称性没有明显变化。
我们通过实验验证了在摆动相期间提供踝关节背屈辅助可以暂时改善足下垂患者的步态不对称性。实验结果还证明了所开发的 AFO 用于足下垂患者步态辅助的有效性。