Filipe Vitor M, Pereira José E, Costa Luís M, Maurício Ana C, Couto Pedro A, Melo-Pinto Pedro, Varejão Artur S P
Department of Engineering, CETAV, University of Trás-os-Montes e Alto Douro, P.O. Box 1013, 5001-911 Vila Real, Portugal.
J Neurosci Methods. 2006 May 15;153(1):55-61. doi: 10.1016/j.jneumeth.2005.10.006. Epub 2005 Dec 7.
In rat gait kinematics, the method most frequently used for measuring hindlimb movement involves placing markers on the skin surface overlying the joints being analyzed. Soft tissue movement around the knee joint has been considered the principle source of error when estimating hindlimb joint kinematics in rodents. However, the motion of knee marker was never quantified, nor the different variations in joint angle associated with this gait analysis system. The purpose of this study was two-fold. The first purpose was to expand upon the limited pool of information describing the effect of soft tissue movement over the knee upon the angular positions of the hip, knee and ankle of rats during treadmill locomotion. Secondly, it was a goal of this study to document the magnitude of the skin displacement when using markers that were attached superficially to the knee joint. This was examined by comparing the hindlimb kinematics in sagittal plane during treadmill locomotion determined from the marker attached to the knee and when the knee position was determined indirectly by computer analysis. Results showed that there is a considerable skin movement artefact which propagates to knee joint position and hindlimb kinematics estimates. It was concluded that these large errors can decrease data reliability in the research of rat gait analysis.
在大鼠步态运动学中,测量后肢运动最常用的方法是在被分析关节上方的皮肤表面放置标记物。在估计啮齿动物后肢关节运动学时,膝关节周围的软组织运动被认为是误差的主要来源。然而,膝关节标记物的运动从未被量化,与这种步态分析系统相关的关节角度的不同变化也未被量化。本研究有两个目的。第一个目的是扩展有限的信息库,该信息库描述了在跑步机运动期间,膝关节上方软组织运动对大鼠髋、膝和踝关节角度位置的影响。其次,本研究的一个目标是记录使用表面附着在膝关节上的标记物时皮肤位移的大小。通过比较跑步机运动期间矢状面的后肢运动学来进行研究,其中一种情况是根据附着在膝关节上的标记物确定后肢运动学,另一种情况是通过计算机分析间接确定膝关节位置。结果表明,存在相当大的皮肤运动伪影,它会传播到膝关节位置和后肢运动学估计中。得出的结论是,这些大误差会降低大鼠步态分析研究中的数据可靠性。