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机器人交互式步态训练结合虚拟现实和增强现实对天使综合征患者平衡、粗大运动功能、步态动力学和运动学特征的影响:一例报告

Effects of Robotic Interactive Gait Training Combined with Virtual Reality and Augmented Reality on Balance, Gross Motor Function, Gait Kinetic, and Kinematic Characteristics in Angelman Syndrome: A Case Report.

作者信息

Han Sangkeun, Park Chanhee, You Joshua Sung H

机构信息

Sports Movement Artificial-Intelligence Robotics Technology (SMART) Institute, Department of Physical Therapy, Yonsei University, Wonju 26493, Korea.

Department of Physical Therapy, Yonsei University, Wonju 26493, Korea.

出版信息

Children (Basel). 2022 Apr 12;9(4):544. doi: 10.3390/children9040544.

Abstract

Angelman syndrome (AS) is a genetic neurological disorder resulting in cognitive and neuromuscular impairments, such as lack of safety awareness and attention, as well as lack of balance and locomotor control. The robotic interactive gait training (RIGT) system is designed to provide accurate proprioceptive, kinematic, and kinetic feedback, and facilitate virtual reality and augmented reality (VR-AR) interactive exercises during gait training. In the present case report, we examined the effect of an innovative hip-knee-ankle interlimb-coordinated RIGT system. We utilized this therapeutic modality in a participant with Angelman syndrome (AS). Gross motor function measures, risk of fall, and gait-related kinetic (force), and kinematic (joint angle) biomechanical characteristics were assessed before and after 20 sessions of RIGT with VR-AR. We found RIGT with VR-AT improved gait ability, as shown by Performance-Oriented Mobility Assessment score, gross motor function by Gross Motor Function Measure score, balance by Pediatric Balance Scale score, knee and hip joint kinetics, and kinematics during gait. Our clinical and biomechanical evidence provide important clinical insights to improve the effectiveness of current neurorehabilitation approaches for treating patients with AS in balance and locomotor control and reduce the risk of falling.

摘要

安吉尔曼综合征(AS)是一种遗传性神经障碍,会导致认知和神经肌肉损伤,如缺乏安全意识和注意力,以及缺乏平衡和运动控制能力。机器人交互式步态训练(RIGT)系统旨在提供准确的本体感觉、运动学和动力学反馈,并在步态训练期间促进虚拟现实和增强现实(VR-AR)交互式练习。在本病例报告中,我们研究了一种创新的髋-膝-踝肢体间协调RIGT系统的效果。我们将这种治疗方式应用于一名患有安吉尔曼综合征(AS)的参与者。在进行20次带有VR-AR的RIGT训练前后,对其粗大运动功能测量、跌倒风险以及与步态相关的动力学(力)和运动学(关节角度)生物力学特征进行了评估。我们发现,带有VR-AT的RIGT改善了步态能力,这体现在以性能为导向的移动性评估得分、通过粗大运动功能测量得分评估的粗大运动功能、通过儿科平衡量表得分评估的平衡能力、步态期间的膝关节和髋关节动力学以及运动学上。我们的临床和生物力学证据为提高当前神经康复方法治疗AS患者平衡和运动控制能力的有效性以及降低跌倒风险提供了重要的临床见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccbd/9031291/99c1dfad6439/children-09-00544-g001.jpg

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