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Methods of Determining Hip Joint Centre: Their Influence on the 3-D Kinematics of the Hip and Knee During the Fencing Lunge

机译:确定髋关节中心的方法:在击剑刺过程中,它们对臀部和膝盖的3-D运动学的影响

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摘要

Purpose. The lunge is a fundamental offensive fencing technique, common to all contemporary fencing styles. Therefore, when using 3-D kinematic analysis to quantify lower extremity rotations during the fencing lunge, it is important for researchers to correctly interpret this movement. Locating the centre of the hip is required to accurately quantify hip and knee joint rotations, with three non-invasive techniques using anatomical, functional and projection methods currently available for the estimation of hip joint centre. This study investigated the influence of these three techniques on hip and knee joint kinematics during the fencing lunge. Methods. Three-dimensional kinematics of the lunge were collected from 13 experienced epee fencers using an eight-camera motion capture system. The 3-D kinematics of the lunge were quantified using the three hip joint centre estimation techniques. Repeated measures ANOVAs were used to compare the discrete 3-D kinematic parameters, and intra-class correlations were employed to identify similarity across the 3-D kinematic waveforms from the three techniques. Results. The results indicate that whilst the kinematic waveforms were similar (R2 ≥0.96); significant differences in discrete parameters were also evident at both the hip and knee joint in the coronal and transverse planes. Conclusions. It appears based on these observations that different hip joint centre locations can significantly influence the resultant kinematic parameters and cannot be used interchangeably.
机译:目的。弓步是一种基本的进攻击剑技术,是所有现代击剑风格所共有的。因此,当使用3-D运动学分析来量化击剑弓步期间的下肢旋转时,对于研究人员而言,正确解释这种运动非常重要。需要使用三种无创技术,使用目前可用于估算髋关节中心的解剖,功能和投影方法,定位髋中心,以准确量化髋关节和膝关节的旋转。这项研究调查了这三种技术对击剑弓步期间髋和膝关节运动学的影响。方法。使用八摄像头运动捕捉系统从13名经验丰富的重剑击剑手中收集了弓箭的三维运动学信息。使用三种髋关节中心估计技术对弓箭的3-D运动学进行了量化。重复测量方差分析用于比较离散的3D运动学参数,并使用类内相关性从这三种技术中识别3D运动学波形之间的相似性。结果。结果表明,虽然运动波形相似(R2≥0.96),但运动波形相似。在冠状和横断面的髋关节和膝关节,离散参数的显着差异也很明显。结论。基于这些观察结果,不同的髋关节中心位置可能会显着影响所得的运动学参数,因此不能互换使用。

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