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首页> 外文期刊>Gait & posture >Comparing three attachment systems used to determine knee kinematics during gait.
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Comparing three attachment systems used to determine knee kinematics during gait.

机译:比较三种用于确定步态期间膝盖运动学的附件系统。

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摘要

This work compared three attachment systems (AS) designed to minimize soft tissue artefacts in gait analysis measurements. The systems' displacement for different knee flexion angles and after 50 gait cycles was investigated using an EOS((R)) low dose biplanar X-ray system. Eighteen subjects (six per AS) were equipped with one AS and placed in five positions. Frontal and profile views were taken for each position. The bones' 3D model and the AS's position were obtained from stereoradiographic reconstructions. The AS's relative position to the underlying bone were computed and interpreted in the anatomical coordinate systems (CS). The AS appeared to be stable in the frontal and sagittal plane (under 1.5 degrees average displacement around the underlying bones) but unstable in the axial plane (over 6 degrees average displacement). The average translation along the femoral and tibial diaphysis was 4.5mm and 2.7mm, respectively. Femoral system B translated significantly less along the diaphysis than the other AS. Concerning the axial rotation, system C appeared to present the most important displacement but there was no statistically significant difference. Systems A and B's rotation in the transverse plane correlated to the knee flexion angle. For the tibia, system B was more stable than systems A and C (p=0.04). On the whole, system B appeared to be the most stable system. This study highlights the fact that no system can limit displacement in the transverse plane.
机译:这项工作在步态分析测量中比较了旨在最大程度减少软组织伪影的三个附着系统(AS)。使用EOS(R)低剂量双平面X射线系统研究了在不同的膝盖屈曲角度和50个步态循环后系统的位移。 18名受试者(每个AS六个)配备了一个AS,并放置在五个位置。为每个位置拍摄正面和侧面视图。骨骼的3D模型和AS的位置是通过立体射线照相重建获得的。在解剖坐标系(CS)中计算并解释了AS与基础骨骼的相对位置。 AS在额叶和矢状面看来是稳定的(在下面的骨骼周围平均位移小于1.5度),而在轴向面则不稳定(平均位移超过6度)。沿股骨和胫骨干骨的平均平移分别为4.5mm和2.7mm。股骨系统B沿骨干的平移明显少于其他AS。关于轴向旋转,系统C似乎显示出最重要的位移,但没有统计学上的显着差异。系统A和B在横向平面上的旋转与膝盖屈曲角度相关。对于胫骨,系统B比系统A和C更稳定(p = 0.04)。总体而言,系统B似乎是最稳定的系统。这项研究强调了以下事实:没有系统可以限制横向平面上的位移。

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