Maleki Maryam, Badri Samaneh, Shayestehepour Hamed, Arazpour Mokhtar, Farahmand Farzam, Mousavi Mohamad Ebrahim, Abdolahi Ehsan, Farkhondeh Hasan, Head John S, Golchin Navid, Mardani Mohammad Ali
a Pediatric Neurorehabilitation Research Center , University of Social Welfare and Rehabilitation Sciences , Tehran , Islamic Republic of Iran.
b Orthotics and Prosthetics Department , University of Social Welfare and Rehabilitation Sciences , Tehran , Islamic Republic of Iran.
Disabil Rehabil Assist Technol. 2019 May;14(4):333-337. doi: 10.1080/17483107.2018.1447610. Epub 2018 Mar 12.
The aim of this study was to assess the performance of an original powered foot clearance creator (PFCC) mechanism worn in conjunction with an isocentric reciprocal gait orthosis (IRGO) and evaluate its effect on trunk compensatory movements and spatiotemporal parameters in nine healthy subjects.
A PFCC motorized mechanism was designed that incorporated twin sole plates, the movements of which enabled increased toe to floor clearance during swing phase. A prototype was constructed in combination with an IRGO, and hence was re-named as an IRGO-PFCC orthosis. The effects of IRGO-PFCC usage on the spatiotemporal parameters and trunk compensatory movements during walking were then analyzed under two conditions, firstly with the PFCC 'active' i.e., with the motorized device functioning, and secondly inactive, where floor clearance was standard.
Ambulating with IRGO-PFCC orthosis resulted in reduction in the spatiotemporal parameters of gait (speed of walking, cadence and stride length) in nine healthy subjects. Walking with IRGO-PFCC orthosis led to significant differences in lateral (p = .007) and vertical (p = .008) trunk compensatory movements. In other words, through using IRGO-PFCC orthosis, the lateral and vertical trunk compensatory movements decreased by 51.32% and 42.7%, respectively.
An adapted PFCC mechanism, with a relatively small motor and power supply could effectively increase toe to floor clearance during swing phase and thereby decrease trunk compensatory motions and potentially improve energy consumption. Implications for rehabilitations •The High rejection rates of reciprocal gait orthoses are related to the increasing in energy expenditure and burden loads on the upper limb joints during walking following trunk compensatory movements.•An original powered foot clearance creator mechanism was designed and constructed to assisting floor clearance capability and reduce trunk compensatory movements in subjects with spinal cord injury during swing phase of gait.•This original powered foot clearance creator mechanism by using moveable soleplates and motorized actuation could decrease the trunk compensatory motions during the ambulation of nine healthy subjects.•More experiments are needed to investigate this mechanism on trunk compensatory movements of SCI subjects.
本研究的目的是评估一种与等中心往复步态矫形器(IRGO)联合使用的新型动力足间隙产生器(PFCC)机制的性能,并评估其对9名健康受试者躯干代偿运动和时空参数的影响。
设计了一种PFCC电动机制,该机制包含双底板,其运动能够在摆动期增加脚趾与地面的间隙。构建了一个与IRGO相结合的原型,因此重新命名为IRGO-PFCC矫形器。然后在两种情况下分析IRGO-PFCC使用对行走过程中时空参数和躯干代偿运动的影响,第一种情况是PFCC“激活”,即电动装置运行,第二种情况是不激活,此时地面间隙为标准值。
使用IRGO-PFCC矫形器行走导致9名健康受试者步态的时空参数(步行速度、步频和步长)降低。使用IRGO-PFCC矫形器行走导致横向(p = 0.007)和纵向(p = 0.008)躯干代偿运动有显著差异。换句话说,通过使用IRGO-PFCC矫形器,横向和纵向躯干代偿运动分别减少了51.32%和42.7%。
一种经过改进的PFCC机制,配备相对较小的电机和电源,能够在摆动期有效增加脚趾与地面的间隙,从而减少躯干代偿运动,并可能改善能量消耗。对康复的意义 •往复步态矫形器的高拒绝率与行走过程中躯干代偿运动后能量消耗增加和上肢关节负担负荷增加有关。•设计并构建了一种新型动力足间隙产生器机制,以辅助脊髓损伤患者在步态摆动期的离地间隙能力并减少躯干代偿运动。•这种通过使用可移动底板和电动驱动的新型动力足间隙产生器机制可以减少9名健康受试者行走过程中的躯干代偿运动。•需要更多实验来研究该机制对脊髓损伤受试者躯干代偿运动的影响。