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Muscle work is biased toward energy generation over dissipation in non-level running

机译:在非平跑中肌肉的工作偏向于产生能量而不是消耗能量

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摘要

This study tested the hypothesis that skeletal muscles generate more mechanical energy in gait tasks that raise the center of mass compared to the mechanical energy they dissipate in gait tasks that lower the center of mass despite equivalent changes in total mechanical energy. Thirteen adults ran on a 10° decline and incline surface at a constant average velocity. Three-dimensional (3D) joint powers were calculated from ground force and 3D kinematic data using inverse dynamics. Joint work was calculated from the power curves and assumed to be due to skeletal muscle–tendon actuators. External work was calculated from the kinematics of the pelvis through the gait cycle. Incline vs. decline running was characterized with smaller ground forces that operated over longer lever arms causing larger joint torques and work from these torques. Total lower extremity joint work was 28% greater in incline vs. decline running (1.32 vs. −1.03 J/kg m, p<0.001). Total lower extremity joint work comprised 86% and 71% of the total external work in incline (1.53 J/kg m) and decline running (−1.45 J/kg m), which themselves were not significantly different (p<0.180). We conjectured that the larger ground forces in decline vs. incline running caused larger accelerations of all body tissues and initiated a greater energy-dissipating response in these tissues compared to their response in incline running. The runners actively lowered themselves less during decline stance and descended farther as projectiles than they lifted themselves during incline stance and ascended as projectiles. These data indicated that despite larger ground forces in decline running, the reduced displacement during downhill stance phases limited the work done by muscle contraction in decline compared to incline running.
机译:这项研究检验了以下假设,即与总机械能的等效变化相比,骨骼肌在提高质心的步态任务中产生更多的机械能,而在降低质心的步态任务中消耗的机械能却更高。 13位成年人以10°的速度下降并以恒定的平均速度倾斜地面。使用逆动力学从地面力和3D运动数据计算三维(3D)联合力。关节功是根据力量曲线计算得出的,并假定是由于骨骼肌肌腱致动器引起的。通过步态周期从骨盆的运动学计算外部功。倾斜与下降运行的特征是较小的地面力,该地面力作用于较长的杠杆臂,从而导致较大的关节扭矩,并根据这些扭矩进行工作。与下坡相比,下肢的总下肢关节活动增加了28%(1.32对−1.03 J / kg m,p <0.001)。下肢关节的总工作量分别占斜度(1.53 J / kg m)和下坡运动(−1.45 J / kg m)的总外部工作量的86%和71%,它们本身并无显着差异(p <0.180)。我们推测,与倾斜跑步相比,下降与倾斜跑步时更大的地面力会引起所有人体组织的更大加速度,并在这些组织中引发更大的能量耗散响应。跑步者在下降姿态时主动降低自己的姿势,并以弹丸的方式下降得比在倾斜姿态中提升自己并以弹丸的方式提升时要低。这些数据表明,尽管在下坡运动中地面力较大,但在下坡姿态阶段减少的位移限制了与倾斜运动相比下坡肌肉收缩所完成的工作。

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