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Non-Invasive Kinematic Analysis of the Triceps surae Muscle-Tendon Complex During a Gait

机译:步态三次肱三头肌Surae肌腱复合物的非侵入性运动学分析

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The purpose of this study is to calculate the length and velocity change of gastrocnemius and soleus muscle-tendon complex (MTC) for diagnosis and estimation of the rehabilitation procedure of the patient from non-invasive 3D markers. The previous method measuring the length of MTC has been dependant on the regression equation based on the rotation angle in the sagittal plane. However, in view of the fact that movement analysis is based on the human body having a variety of structure, the measurement using merely rotation angle and regression equation which not based on each subject shank and foot length might not be accurate. In order to overcome these limitations, the length change of MTC is calculated, employing 3D MTC model accompanied with the trajectory data of markers attached anatomical landmarks, each subject measurements and femur condyle radius. Basically, more accurate length change could be acquired through the 3D trajectory data of markers in comparing with 2D data based on the rotation angle. As our study, the difference of the gastrocnemius length change between 3D marker trajectory based method and the method using a 2-D angle was approximately 4 percent (2cm) at maximum contraction and 1 percent (0.5cm) at maximum relaxation. Similarly, the difference in terms of the soleus was approximately 0.7 percent (0.3cm) at maximum contraction and 0.5 percent (0.2cm) at maximum relaxation.
机译:本研究的目的是计算胃肠肿瘤和肌肉肌腱复合物(MTC)的长度和速度变化,用于诊断和估计来自非侵入性3D标记的患者的康复程序。先前的测量MTC长度的方法已经取决于基于矢状平面的旋转角度的回归方程。然而,鉴于移动分析基于具有多种结构的人体,使用仅基于每个主体柄和脚长度的旋转角度和回归方程的测量可能不准确。为了克服这些限制,计算MTC的长度变化,采用3D MTC模型,伴随着标记的轨迹数据附加的解剖学地标,每个主题测量和股骨髁率半径。基本上,通过基于旋转角度的2D数据相比,可以通过标记的3D轨迹数据来获取更准确的长度变化。作为我们的研究,3D标记轨迹的方法与使用二维角度的方法之间的腓肠肌长度变化的差异为大约4%(2cm),最大收缩和最大弛豫的1%(0.5cm)。类似地,在最大收缩的最大收缩和0.5%(0.2cm)的最大弛豫下,肠的差异约为0.7%(0.3cm)。

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