Arazpour Mokhtar, Bani Monireh Ahmadi, Chitsazan Ahmad, Ghomshe Farhad Tabatabai, Kashani Reza Vahab, Hutchins Stephen William
University of Social Welfare and Rehabilitation Science, Orthotics and Prosthetics, Tehran, Iran, Islamic Republic of.
Disabil Rehabil Assist Technol. 2013 May;8(3):261-6. doi: 10.3109/17483107.2012.688239. Epub 2012 May 22.
The aim of this study was to identify the effect of induced knee flexion during gait on the kinematics and temporal-spatial parameters during walking by a patient with spinal cord injury (SCI) through the application of an isocentric reciprocating gait orthosis (IRGO) with a powered knee mechanism.
Two orthoses were considered and evaluated for an ISCI subject with a T8 level of injury. An IRGO was initially manufactured by incorporating drop lock knee joints and was fabricated with custom molded AFOs to block ankle motion. This orthosis was also adapted with electrically-activated knee joints to provide active knee extension and flexion when disengaged.
Walking speed, stride length and cadence were increased 37.5%, 11% and 26%, respectively with the new orthosis as compared to using the IRGO. The vertical and horizontal compensatory motions reduced compared to mechanical IRGO. At end of stance phase, knee joint flexion was 37.5° for the AKIRGO compared to 7° of movement when walking with the IRGO. The overall pattern of walking produced was comparable to that of normal human walking.
Knee flexion during swing phase resulted in an improved gait performance and also reduction in compensatory motions when compared to a mechanical IRGO.
本研究旨在通过应用带有动力膝关节机制的等中心往复式步态矫形器(IRGO),确定脊髓损伤(SCI)患者在步态中诱导膝关节屈曲对步行时运动学和时空参数的影响。
针对一名T8损伤水平的脊髓损伤患者,考虑并评估了两种矫形器。最初制造的IRGO采用了下拉锁定膝关节,并配有定制模制的踝足矫形器(AFO)以阻止踝关节运动。这种矫形器还配备了电动膝关节,在脱开时可提供主动膝关节伸展和屈曲。
与使用IRGO相比,新型矫形器使步行速度、步长和步频分别提高了37.5%、11%和26%。与机械IRGO相比,垂直和水平代偿运动减少。在站立末期,主动膝关节伸展和屈曲的IRGO(AKIRGO)的膝关节屈曲角度为37.5°,而使用IRGO行走时的运动角度为7°。所产生的整体步行模式与正常人的步行模式相当。
与机械IRGO相比,摆动期膝关节屈曲可改善步态表现,并减少代偿运动。