Svoboda Zdenek, Janura Miroslav, Kutilek Patrik, Janurova Eva
Faculty of Physical Culture, Palacky University Olomouc, Olomouc, Czech Republic.
Faculty of Biomedical Engineering, Czech Technical University in Prague, Kladno, Czech Republic.
J Hum Kinet. 2016 Jul 2;51:37-43. doi: 10.1515/hukin-2015-0168. eCollection 2016 Jun 1.
Lots of athletic skills performed during practice or competition are initiated by the legs, where athletes either walk or run prior to executing specific skills. Kinematic chains are used to describe the relationships between body segments and joints during movement. The aim of this study was to determine the relationships between movements of lower limb segments and the pelvis in open and closed kinematic chains while walking. The experimental group consisted of 32 males (age 23.3 ± 2.5 years, body mass 78.1 ± 8.7 kg, body height 182 ± 6 cm). For 3D analysis, an optoelectronic system Vicon MX (7 cameras, frequency 200 Hz) was used. Positioning of the segments was determined by the PlugInGait Model. Each participant executed five trials at speeds ranging from 1.38 to 1.52 m·s. The relationships between angle variables of the lower limbs and the pelvis in selected gait cycle phases were evaluated using STATISTICA software (version 10.0) and the Spearman correlation. The highest numbers of moderate and large correlations were found at opposite toe off, heel rise and initial contact for the sagittal and transversal planes in comparison to the frontal plane. The closed kinematic chain had a stronger impact on determining the movement pattern. The instructions or interventions focusing on closed kinematic chain alternation are more effective for changes in a movement pattern. The preferred limb initiates kinematics in the direction of propulsion, while the non-preferred limb in internal and external rotation.
在训练或比赛中所展现的许多运动技能都是由腿部发起的,运动员在执行特定技能之前会先行走或奔跑。运动链用于描述运动过程中身体各节段与关节之间的关系。本研究的目的是确定在行走时,下肢节段与骨盆在开链和闭链运动中的关系。实验组由32名男性组成(年龄23.3±2.5岁,体重78.1±8.7千克,身高182±6厘米)。采用光电系统Vicon MX(7台摄像机,频率200赫兹)进行三维分析。节段的定位由PlugInGait模型确定。每位参与者以1.38至1.52米·秒的速度进行五次试验。使用STATISTICA软件(版本10.0)和斯皮尔曼相关性评估选定步态周期阶段下肢与骨盆角度变量之间的关系。与额面相比,在矢状面和横断面的对侧足趾离地、足跟抬起和初始接触时,发现中等和高度相关性的数量最多。闭链运动对确定运动模式的影响更强。侧重于闭链运动改变的指导或干预对运动模式的改变更有效。优势肢体在推进方向上启动运动学,而非优势肢体则在内外旋转方面启动。