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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part P. Journal of Sports Engineering and Technology >The influence of boot longitudinal flexural stiffness on external mechanical work and running economy during skate roller-skiing: A case study
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The influence of boot longitudinal flexural stiffness on external mechanical work and running economy during skate roller-skiing: A case study

机译:滑冰滑雪滑雪滑雪板外部机械工作与运行经济的影响 - 以案例研究

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摘要

This case study examines the impact of boot longitudinal flexural stiffness on the total external mechanical work of a skier's centre of mass per distance travelled in the forward direction ((W) over bar (EX)(J/m)) and on running economy during skate roller-skiing under submaximal steady-state conditions. Moreover, it analyses time derivatives of total (W) over bar (EX), of (W) over bar (EX) performed by the roller-skis and poles, respectively, and of the directly useful mechanical work (the sum of the work to overcome centre of mass' gravity and rolling resistance) within a typical roller-skiing cycle. Multiple roller-skiing trials (G3 technique) were performed by one subject on an inclined treadmill with boots of soft, intermediate, and stiff flexural stiffness. The orientation and magnitude of the roller-ski and pole ground reaction forces, body kinematics, VO2, and lactic acid concentration were monitored. The stiff boots had 13.4% (p < 0.01) lower <(W)over bar>(EX) compared to the intermediate boots, and 20.7% (p < 0.001) lower <(W)over bar>(EX) compared to the soft boots. Regarding running economy, the soft boots had 2.2% (p < 0.05) higher VO2 compared to the intermediate boots, but the same VO2 compared to the stiff boots. In conclusion, the soft boots had significantly higher <(W)over bar>(EX) and running economy, while stiff boots had significantly lower (W) over bar (EX) and intermediate boots significantly lower running economy. Moreover, (W) over bar (EX) appears to be a better indicator of the boot flexural stiffness impact on energy efficiency than running economy.
机译:本案例研究探讨了引导纵向弯曲刚度对滑雪者群体的总体机械工作的影响,每距离在向前方向((W)上方(ex)(J / M))和运行经济期间在潜水柱稳态条件下滑滚筒滑雪。此外,它分析了通过辊滑雪板和杆和直接有用的机械工作(所述W)的杆(ex)的总(w)的杆(ex)的时间衍生物(w)的杆(ex)的时间衍生物分别和直接有用的机械工作(工作总和在典型的滚子滑雪循环中克服质量“重力和滚动阻力”。多辊滑雪试验(G3技术)由一个受试者进行倾斜跑步机,其具有柔软,中间和抗弯曲刚度的靴子。监测辊滑雪和极地反作用力,身体运动学,VO2和乳酸浓度的取向和幅度。与中间靴子相比,僵硬的靴子具有13.4%(P <0.01)较低的杆>(ex),与中间靴相比,20.7%(p <0.001)较低的<(w),与杆>(ex)相比柔软的靴子。关于运行经济,与中间靴相比,柔软的靴子的VO2高2.2%(P <0.05),但与僵硬靴子相比相同的VO2。总之,柔软的靴子在酒吧>(ex)和运行经济上具有显着高的<(w),而僵硬的靴子显着降低(W)杆(ex)和中间靴子显着降低运行经济。此外,(W)在酒吧(EX)上似乎是对能源效率影响的更好指标而不是运行经济。

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