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Effect of Trunk Sagittal Attitude on Shoulder Thorax and Pelvis Three-Dimensional Kinematics in Able-Bodied Subjects during Gait

机译:躯干矢状位姿对步态健康人群肩膀胸部和骨盆三维运动学的影响

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摘要

It has been shown that an original attitude in forward or backward inclination of the trunk is maintained at gait initiation and during locomotion, and that this affects lower limb loading patterns. However, no studies have shown the extent to which shoulder, thorax and pelvis three-dimensional kinematics are modified during gait due to this sagittal inclination attitude. Thirty young healthy volunteers were analyzed during level walking with video-based motion analysis. Reflecting markers were mounted on anatomical landmarks to form a two-marker shoulder line segment, and a four-marker thorax and pelvis segments. Absolute and relative spatial rotations were calculated, for a total of 11 degrees of freedom. The subjects were divided into two groups of 15 according to the median of mean thorax inclination angle over the gait cycle. Preliminary MANOVA analysis assessed whether gender was an independent variable. Then two-factor nested ANOVA was used to test the possible effect of thorax inclination on body segments, planes of motion and gait periods, separately. There was no significant difference in all anthropometric and spatio-temporal parameters between the two groups, except for subject mass. The three-dimensional kinematics of the thorax and pelvis were not affected by gender. Nested ANOVA revealed group effect in all segment rotations apart those at the pelvis, in the sagittal and frontal planes, and at the push-off. Attitudes in sagittal thorax inclination altered trunk segments kinematics during gait. Subjects with a backward thorax showed less thorax-to-pelvis motion, but more shoulder-to-thorax and thorax-to-laboratory motion, less motion in flexion/extension and in lateral bending, and also less motion during push-off. This contributes to the understanding of forward propulsion and sideways load transfer mechanisms, fundamental for the maintenance of balance and the risk of falling.
机译:已经表明,在步态开始时和运动期间保持躯干向前或向后倾斜的原始姿势,并且这影响下肢的负荷模式。但是,没有研究表明由于这种矢状倾斜姿态,步态期间肩膀,胸部和骨盆三维运动学的变化程度。通过基于视频的运动分析在水平步行过程中对30名年轻健康志愿者进行了分析。将反射标记物安装在解剖界标上,以形成两个标记的肩部线段以及四个标记的胸部和骨盆段。计算了总共11个自由度的绝对和相对空间旋转。根据步态周期中平均胸部倾斜角度的中位数,将受试者分为15组。初步的MANOVA分析评估了性别是否为自变量。然后使用两因素嵌套ANOVA分别测试胸廓倾斜对人体节段,运动平面和步态周期的可能影响。两组之间除人体质量外,所有人体测量学和时空参数均无显着差异。胸部和骨盆的三维运动学不受性别影响。嵌套方差分析显示,在所有节段旋转中,除了骨盆,矢状面和额叶平面以及下垂处的旋转,均具有群效应。步态期间矢状胸腔倾斜的姿态改变了躯干节段的运动学。胸部向后移动的受试者的胸部到骨盆运动较少,但肩部到胸部以及胸部到实验室的运动较多,屈曲/伸展运动和侧向弯曲运动较少,下推时的运动也较少。这有助于了解向前推进和侧向载荷传递机制,这对于保持平衡和跌倒的风险至关重要。

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