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首页> 外文期刊>The Journal of Experimental Biology >Angular momentum in human walking
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Angular momentum in human walking

机译:人类行走的角动量

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Angular momentum is a conserved physical quantity for isolated systems where no external moments act about a body's center of mass (CM). However, in the case of legged locomotion, where the body interacts with the environment (ground reaction forces), there is no a priori reason for this relationship to hold. A key hypothesis in this paper is that angular momentum is highly regulated throughout the walking cycle about all three spatial directions [vertical bar(L) over bar (t)vertical bar approximate to 0], and therefore horizontal ground reaction forces and the center of pressure trajectory can be explained predominantly through an analysis that assumes zero net moment about the body's CM. Using a 16-segment human model and gait data for 10 study participants, we found that calculated zero-moment forces closely match experimental values (R-x(2)=0.91; R-y(2)=0.90). Additionally, the centroidal moment pivot (point where a line parallel to the ground reaction force, passing through the CM, intersects the ground) never leaves the ground support base, highlighting how closely the body regulates angular momentum. Principal component analysis was used to examine segmental contributions to whole-body angular momentum. We found that whole-body angular momentum is small, despite substantial segmental momenta, indicating large segment-to-segment cancellations (similar to 95% medio-lateral, similar to 70% anterior-posterior and similar to 80% vertical). Specifically, we show that adjacent leg-segment momenta are balanced in the medio-lateral direction (left foot momentum cancels right foot momentum, etc.). Further, pelvis and abdomen momenta are balanced by leg, chest and head momenta in the anterior-posterior direction, and leg momentum is balanced by upper-body momentum in the vertical direction. Finally, we discuss the determinants of gait in the context of these segment-to-segment cancellations of angular momentum.
机译:角动量是隔离系统的守恒物理量,在隔离系统中,外部力矩不围绕人体的质心(CM)起作用。但是,在腿部运动的情况下,身体与环境(地面反作用力)相互作用,没有先验的理由可以保持这种关系。本文的主要假设是,在整个步行周期中,所有三个空间方向[垂直杆(L)超过杆(t)垂直杆的垂直杆近似于0]时,角动量都受到高度调节,因此水平地面反作用力和压力轨迹可以主要通过假设身体CM的净力矩为零的分析来解释。使用16段人体模型和10位研究参与者的步态数据,我们发现计算出的零力矩力与实验值非常接近(R-x(2)= 0.91; R-y(2)= 0.90)。此外,质心矩枢轴(平行于地面反作用力的线穿过CM与地面相交的点)从不离开地面支撑基座,从而突出了人体调节角动量的紧密程度。主成分分析用于检查对全身角动量的分段贡献。我们发现,尽管有较大的节段动量,但全身角动量很小,表明节段至节段的抵消较大(类似于中外侧的95%,前后前后的70%和垂直的80%)。具体而言,我们表明相邻的腿段动量在中外侧方向上是平衡的(左脚动量抵消了右脚动量等)。另外,骨盆和腹部的动量在前后方向上由腿,胸部和头部的动量来平衡,腿的动量在上下方向上由上身的动量来平衡。最后,我们在角动量的段到段抵消中讨论步态的决定因素。

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