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步态机器人 Lokomat 中 FreeD 模块的横向平移时间:需要手动适应。

The FreeD module's lateral translation timing in the gait robot Lokomat: a manual adaptation is necessary.

机构信息

Children's Research Center, University Children's Hospital Zurich, Steinwiesstrasse 75, Zurich, CH-8032, Switzerland.

Swiss Children's Rehab, University Children's Hospital Zurich, Mühlebergstrasse 104, Affoltern am Albis, CH-8910, Switzerland.

出版信息

J Neuroeng Rehabil. 2023 Aug 18;20(1):109. doi: 10.1186/s12984-023-01227-3.

Abstract

BACKGROUND

Pelvic and trunk movements are often restricted in stationary robotic gait trainers. The optional FreeD module of the driven gait orthosis Lokomat offers a combined, guided lateral translation and transverse rotation of the pelvis and may therefore support weight shifting during walking. However, from clinical experience, it seems that the default setting of this timing does not correspond well with the timing of the physiological pelvic movement during the gait cycle. In the software, a manual adaptation of the lateral translation's timing with respect to the gait cycle is possible. The aim of this study was to investigate if such an offset is indeed present and if a manual adaptation by the therapist can improve the timing towards a more physiological pattern comparable to physiological overground walking.

METHODS & RESULTS: Children and adolescents with neurologic gait disorders and a Gross Motor Function Classification System level I-IV completed two different walking conditions (FreeD Default and FreeD Time Offset) in the Lokomat. The medio-lateral center of mass positions were calculated from RGB-Depth video recordings with a marker-less motion capture algorithm. Data of 22 patients (mean age: 12 ± 3 years) were analyzed. Kinematic analyses showed that in the FreeD Default condition, the maximum lateral center of mass excursion occurred too early. In the FreeD Time Offset condition, the manual adaptation by the therapists led to a delay of the maximum center of mass displacement by 8.2% in the first phase of the gait cycle and by 4.9% in the second phase of the gait cycle compared to the FreeD Default condition. The maximum lateral center of mass excursion was closer to that during physiological overground walking in the FreeD Time Offset condition than in the FreeD Default condition.

CONCLUSION

A manual adaptation of the timing of the FreeD module in the Lokomat shifts pelvis kinematics in a direction of physiological overground walking. We recommend therapists to use this FreeD Time Offset function to adjust the phase of weight shifting for each patient individually to optimize the kinematic walking pattern when a restorative therapy approach is adopted.

摘要

背景

在固定式机器人步态训练器中,骨盆和躯干的运动通常受到限制。驱动型步态矫形器 Lokomat 的可选 FreeD 模块提供了骨盆的联合引导侧向平移和横向旋转,因此可以在行走过程中支持体重转移。然而,根据临床经验,似乎此定时的默认设置与步态周期中骨盆运动的生理定时不对应。在软件中,可以手动调整侧向平移相对于步态周期的定时。本研究的目的是研究这种偏移是否确实存在,以及治疗师的手动调整是否可以改善定时,使其更接近类似于生理地面行走的生理模式。

方法和结果

患有神经运动障碍且粗大运动功能分类系统(GMFCS)级别为 I-IV 的儿童和青少年在 Lokomat 中完成了两种不同的行走条件(FreeD 默认和 FreeD 时间偏移)。从中立位到双支撑相的重心位置的变化通过使用标记自由运动捕捉算法从 RGB-Depth 视频记录中计算得出。分析了 22 名患者的数据(平均年龄:12 ± 3 岁)。运动学分析表明,在 FreeD 默认条件下,最大的横向重心位移发生得太早。在 FreeD 时间偏移条件下,治疗师的手动调整导致在步态周期的第一阶段最大重心位移延迟了 8.2%,在第二阶段延迟了 4.9%,与 FreeD 默认条件相比。与 FreeD 默认条件相比,最大横向重心位移在 FreeD 时间偏移条件下更接近生理地面行走时的情况。

结论

在 Lokomat 中手动调整 FreeD 模块的定时会使骨盆运动朝着生理地面行走的方向发生变化。我们建议治疗师使用此 FreeD 时间偏移功能根据每位患者的情况调整体重转移的相位,以在采用恢复性治疗方法时优化运动学行走模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/453f/10439589/ee14c72610dc/12984_2023_1227_Fig1_HTML.jpg

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