Robotics Research Group, Dept. of Mechanical Engineering, KU Leuven, 3001 Leuven, Belgium; Flanders Make, Core Lab ROB, KU Leuven, 3001 Leuven, Belgium.
Robotics Research Group, Dept. of Mechanical Engineering, KU Leuven, 3001 Leuven, Belgium; Flanders Make, Core Lab ROB, KU Leuven, 3001 Leuven, Belgium.
Hum Mov Sci. 2021 Dec;80:102866. doi: 10.1016/j.humov.2021.102866. Epub 2021 Sep 10.
The soft tissue artifact (STA) is a phenomenon occurring when the motion of bones or anatomical segments is measured by means of skin markers: the biological tissues between the markers and the bone produce a relative motion bone-markers that leads to inaccuracies in the estimation of rigid body poses or kinematics. The aim of this study was to quantify the STA by exploiting a recently published gait analysis dataset. The dataset was composed of six adult subjects with a total knee arthroplasty who underwent gait analysis trials. The motion of the knee was concurrently recorded by means of (i) fluoroscopy imaging and (ii) an optoelectronic system and redundant markers attached to the thigh and shank. The STA was studied by comparing the results calculated on the marker sets with the results obtained from the fluoroscopy data. The stance and swing phases were considered separately. Rigid STA motion and local STA deformation were studied separately. In addition to previous studies, the instantaneous helical axis (IHA) of the knee was calculated and the effect of the STA on its calculation was assessed. The largest rigid-motion STA effect was observed on the thigh cluster (10 deg. and ~ 18 mm). The shank cluster was mainly affected during the swing phase (7 deg. and ~ 17 mm). The local STA deformation affected differently the markers. The largest effect was ~16 mm and the lowest was ~4 mm. The estimation of the IHA was not reliable when based only on markers, having an estimation error of ~17 deg. and ~ 25 mm. A high variability of results across subjects was observed.
软组织伪影(STA)是一种当骨骼或解剖部位的运动通过皮肤标记点来测量时发生的现象:标记点和骨骼之间的生物组织会产生相对于骨骼标记点的相对运动,从而导致刚体姿态或运动学的估计不准确。本研究的目的是利用最近发表的步态分析数据集来量化 STA。该数据集由六名接受全膝关节置换的成年受试者组成,他们接受了步态分析试验。通过(i)荧光透视成像和(ii)光电系统和冗余标记附着在大腿和小腿上,同时记录膝关节的运动。通过将标记集上计算的结果与荧光透视数据获得的结果进行比较来研究 STA。分别考虑了站立和摆动阶段。分别研究了刚性 STA 运动和局部 STA 变形。除了之前的研究,还计算了膝关节的瞬时螺旋轴(IHA),并评估了 STA 对其计算的影响。在大腿簇上观察到最大的刚性运动 STA 效应(10 度和18 毫米)。在摆动阶段,小腿簇主要受到影响(7 度和17 毫米)。局部 STA 变形对标记点的影响不同。最大影响约为 16 毫米,最小影响约为 4 毫米。仅基于标记点估计 IHA 不可靠,估计误差约为 17 度和~25 毫米。观察到各受试者之间的结果存在高度变异性。