Khoo I-Hung, Marayong Panadda, Krishnan Vennila, Balagtas Michael, Rojas Omar, Leyba Katherine
1Electrical Engineering Department, California State University, Long Beach, CA 90840 USA.
2Mechanical and Aerospace Engineering Department, California State University, Long Beach, CA 90840 USA.
Biomed Eng Lett. 2017 Jun 7;7(4):287-298. doi: 10.1007/s13534-017-0036-1. eCollection 2017 Nov.
In this work, we develop a device, called 'Walk-Even', that can provide real-time feedback to correct gait asymmetry commonly exhibited in post-stroke survivors and persons with certain neurological disorders. The device computes gait parameters, including gait time, swing time, and stance time of each leg, to detect gait asymmetry and provide corresponding real-time biofeedback by means of auditory and electrotactile stimulation to actively correct the user's gait. The system consists of customized force-sensor-embedded insoles adjustable to fit any shoe size, electrotactile and auditory feedback circuits, microcontroller, and wireless XBee transceivers. The device also offers data saving capability. To validate its accuracy and reliability, we compared the gait measurements from our device with a commercial gait and balance assessment device, Zeno Walkway. The results show good correlation and agreement in a validity study with six healthy subjects and reliability study with seventeen healthy subjects. In addition, preliminary testing on six post-stroke patients after an 8-week training shows that the Walk-Even device helps to improve gait symmetry, foot pressure and forefoot loading of the affected side. Thus, initial testing indicates that the device is accurate in measuring the gait parameters and effective in improving gait symmetry using real-time feedback. The device is portable and low cost and has the potential for use in a non-clinical setting for patients that can walk independently without assistance. A more extensive testing with stroke patients is still ongoing.
在这项工作中,我们开发了一种名为“Walk-Even”的设备,它可以提供实时反馈,以纠正中风幸存者和患有某些神经系统疾病的人通常表现出的步态不对称。该设备计算步态参数,包括每条腿的步态时间、摆动时间和站立时间,以检测步态不对称,并通过听觉和电触觉刺激提供相应的实时生物反馈,以积极纠正用户的步态。该系统由定制的嵌入力传感器的鞋垫组成,可调节以适合任何鞋码,还有电触觉和听觉反馈电路、微控制器以及无线XBee收发器。该设备还具备数据保存功能。为了验证其准确性和可靠性,我们将我们设备的步态测量结果与商业步态和平衡评估设备Zeno Walkway进行了比较。结果表明,在对6名健康受试者进行的效度研究以及对17名健康受试者进行的信度研究中,两者具有良好的相关性和一致性。此外,对6名中风后患者进行8周训练后的初步测试表明,Walk-Even设备有助于改善患侧的步态对称性、足部压力和前足负荷。因此,初步测试表明该设备在测量步态参数方面是准确的,并且通过实时反馈在改善步态对称性方面是有效的。该设备便携且成本低,对于能够在无辅助情况下独立行走的患者,有潜力在非临床环境中使用。对中风患者进行的更广泛测试仍在进行中。