List Renate, Postolka Barbara, Schütz Pascal, Hitz Marco, Schwilch Peter, Gerber Hans, Ferguson Stephen J, Taylor William R
Institute for Biomechanics, ETH Zurich, Zurich, Switzerland.
PLoS One. 2017 Oct 9;12(10):e0185952. doi: 10.1371/journal.pone.0185952. eCollection 2017.
Videofluoroscopy has been shown to provide essential information in the evaluation of the functionality of total knee arthroplasties. However, due to the limitation in the field of view, most systems can only assess knee kinematics during highly restricted movements. To avoid the limitations of a static image intensifier, a moving fluoroscope has been presented as a standalone system that allows tracking of the knee during multiple complete cycles of level- and downhill-walking, as well as stair descent, in combination with the synchronous assessment of ground reaction forces and whole body skin marker measurements. Here, we assess the ability of the system to keep the knee in the field of view of the image intensifier. By measuring ten total knee arthroplasty subjects, we demonstrate that it is possible to maintain the knee to within 1.8 ± 1.4 cm vertically and 4.0 ± 2.6 cm horizontally of the centre of the intensifier throughout full cycles of activities of daily living. Since control of the system is based on real-time feedback of a wire sensor, the system is not dependent on repeatable gait patterns, but is rather able to capture pathological motion patterns with low inter-trial repeatability.
视频荧光镜检查已被证明在评估全膝关节置换术的功能方面能提供重要信息。然而,由于视野的限制,大多数系统只能在高度受限的运动过程中评估膝关节的运动学。为了避免静态影像增强器的局限性,一种移动荧光镜已作为一个独立系统被提出,该系统能够在平地行走、下坡行走以及下楼梯的多个完整周期中跟踪膝关节,同时同步评估地面反作用力和全身皮肤标记测量。在此,我们评估该系统将膝关节保持在影像增强器视野范围内的能力。通过对10名全膝关节置换术患者进行测量,我们证明在日常生活活动的整个周期中,能够将膝关节保持在影像增强器中心垂直方向1.8±1.4厘米、水平方向4.0±2.6厘米的范围内。由于该系统的控制基于线传感器的实时反馈,所以该系统不依赖于可重复的步态模式,而是能够捕捉试验间重复性低的病理运动模式。