Leboeuf F, Baker R, Barré A, Reay J, Jones R, Sangeux M
School of Health & Society, The University of Salford, UK.
School of Health & Society, The University of Salford, UK.
Gait Posture. 2019 Jan 23;69:126-129. doi: 10.1016/j.gaitpost.2019.01.034.
The Conventional Gait Model (CGM), known by a variety of different names, is widely used in clinical gait analysis. We present pyCGM2, an open-source implementation of the CGM with two versions. The first, CGM1.0, is a clone of Vicon Plug In Gait (PiG) with all its variants. CGM1.0 provides a platform to test the effect of modifications to the CGM on data collected and processed retrospectively or to provide backward compatibility. The second version, CGM1.1, offers some practical modifications and includes three well documented improvements.
How do improvements of the conventional gait model affect joint kinematics and kinetics?
The practical modifications include the possibility to use a medial knee epicondyle marker, during static calibration only, to define the medio-lateral axis of the femur in place of the knee alignment device. The three improvements correspond to the change of pelvis angle decomposition sequence, the adoption of a single tibia coordinate system, and the default decomposition of the joint moments in the joint coordinate system. We validated the outputs of version CGM1.0 against Vicon-PiG, and estimated the effect of the modifications included in version CGM1.1 using gait data collected in 16 healthy participants.
Kinematics and kinetics of CGM1.0 were superimposed with that of Vicon-PiG, with root mean square differences less than 0.04° for kinematics and less than 0.05 N.m.kg-1 for kinetics.
The differences between the CGM1.1 and CGM1.0 were minimal in the healthy participant cohort but we discussed the expected difference in participants with different gait pathologies. We hope that the pyCGM2 will facilitate the systematic testing and the use of improved processing methods for the conventional gait model.
传统步态模型(CGM)有多种不同的名称,在临床步态分析中被广泛使用。我们展示了pyCGM2,这是CGM的一个开源实现,有两个版本。第一个版本CGM1.0是Vicon Plug In Gait(PiG)及其所有变体的克隆。CGM1.0提供了一个平台,用于测试对CGM的修改对回顾性收集和处理的数据的影响,或提供向后兼容性。第二个版本CGM1.1进行了一些实际的修改,并包括三项有详细记录的改进。
传统步态模型的改进如何影响关节运动学和动力学?
实际的修改包括仅在静态校准期间使用内侧膝上髁标记来定义股骨的内外侧轴,以取代膝关节对线装置。三项改进分别对应骨盆角度分解顺序的改变、采用单一胫骨坐标系以及在关节坐标系中默认分解关节力矩。我们将CGM1.0版本的输出与Vicon-PiG进行了验证,并使用16名健康参与者收集的步态数据估计了CGM1.1版本中所包含修改的效果。
CGM1.0的运动学和动力学与Vicon-PiG的运动学和动力学叠加,运动学的均方根差异小于0.04°,动力学的均方根差异小于0.05 N.m.kg-1。
在健康参与者队列中,CGM1.1和CGM1.0之间的差异很小,但我们讨论了不同步态病理参与者的预期差异。我们希望pyCGM2将有助于对传统步态模型进行系统测试和使用改进的处理方法。