Eng J J, Winter D A
Dept of Kinesiology, University of Waterloo, Ontario, Canada.
J Biomech. 1995 Jun;28(6):753-8. doi: 10.1016/0021-9290(94)00124-m.
Kinetic analyses (joint moments, powers and work) of the lower limbs were performed during normal walking to determine what further information can be gained from a three-dimensional model over planar models. It was to be determined whether characteristic moment and power profiles exist in the frontal and transverse planes across subjects and how much work was performed in these planes. Kinetic profiles from nine subjects were derived using a three-dimensional inverse dynamics model of the lower limbs and power profiles were then calculated by a dot product of the angular velocities and joint moments resolved in a global reference system. Characteristic joint moment profiles across subjects were found for the hip, knee and ankle joints in all planes except for the ankle frontal moment. As expected, the major portion of work was performed in the plane of progression since the goal of locomotion is to support the body against gravity while generating movements which propel the body forward. However, the results also showed that substantial work was done in the frontal plane by the hip during walking (23% of the total work at that joint). The characteristic joint profiles suggest defined motor patterns and functional roles in the frontal and transverse planes. Kinetic analysis in three dimensions is necessary particularly if the hip joint is being examined as a substantial amount of work was done in the frontal plane of the hip to control the pelvis and trunk against gravitational forces.
在正常行走过程中对下肢进行动力学分析(关节力矩、功率和功),以确定三维模型相对于平面模型能获取哪些更多信息。研究目的是确定在额状面和横断面中是否存在跨受试者的特征性力矩和功率曲线,以及在这些平面中完成了多少功。使用下肢的三维逆动力学模型得出九名受试者的动力学曲线,然后通过在全局参考系中解析的角速度和关节力矩的点积来计算功率曲线。除了踝关节额状面力矩外,在所有平面中均发现了跨受试者的髋、膝和踝关节的特征性关节力矩曲线。正如预期的那样,由于运动的目标是在支撑身体对抗重力的同时产生推动身体向前的运动,所以大部分功是在行进平面内完成的。然而,结果还表明,步行过程中髋部在额状面内也完成了大量的功(占该关节总功的23%)。特征性关节曲线表明在额状面和横断面中存在明确的运动模式和功能作用。三维动力学分析是必要的,特别是在检查髋关节时,因为髋部在额状面内完成了大量的功来控制骨盆和躯干以对抗重力。