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首页> 外文期刊>Journal of sports sciences. >Ground reaction forces and knee mechanics in the weight acceptance phase of a dance leap take-off and landing.
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Ground reaction forces and knee mechanics in the weight acceptance phase of a dance leap take-off and landing.

机译:地面的反作用力和膝盖力学处于舞步起飞和着陆的重量接受阶段。

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摘要

Aesthetic constraints allow dancers fewer technique modifications than other athletes to negotiate the demands of leaping. We examined vertical ground reaction force and knee mechanics during a saut de chat performed by healthy dancers. It was hypothesized that vertical ground reaction force during landing would exceed that of take-off, resulting in greater knee extensor moments and greater knee angular stiffness. Twelve dancers (six males, six females; age 18.9 +/- 1.2 years, mass 59.2 +/- 9.5 kg, height 1.68 +/- 0.08 m, dance training 8.9 +/- 5.1 years) with no history of low back pain or lower extremity pathology participated in the study. Saut de chat data were captured using an eight-camera Vicon system and AMTI force platforms. Peak ground reaction force was 26% greater during the landing phase, but did not result in increased peak knee extensor moments. Taking into account the 67% greater knee angular displacement during landing, this resulted in less knee angular stiffness during landing. In conclusion, landing was accomplished with less knee angular stiffness despite the greater peak ground reaction force. A link between decreased joint angular stiffness and increased soft tissue injury risk has been proposed elsewhere; therefore, landing from a saut de chat may be more injurious to the knee soft tissue than take-off.
机译:审美上的限制使舞者可以比其他运动员进行更少的技术修改来协商跳跃的要求。在健康的舞者进行的简短交谈中,我们检查了垂直地面反作用力和膝盖力学。假设降落期间的地面垂直反作用力将超过起飞时的反作用力,从而导致更大的膝盖伸肌力矩和更大的膝盖角刚度。 12名舞者(六名男性,六名女性;年龄18.9 +/- 1.2岁,质量59.2 +/- 9.5公斤,身高1.68 +/- 0.08 m,舞蹈训练8.9 +/- 5.1岁),没有下腰痛或下肢病理参与了这项研究。使用八台摄像机的Vicon系统和AMTI部队平台捕获了Saut de chat数据。在着陆阶段,地面峰值反作用力增大了26%,但并未导致峰值膝盖伸肌力矩增加。考虑到着陆时膝盖角位移增加了67%,因此导致着陆时膝盖角刚度较小。总之,尽管峰值地面反作用力较大,但降落仍以较小的膝盖角刚度完成。关节角刚度降低与软组织损伤风险增加之间存在联系。因此,从空谈着陆比起跳对膝部软组织的伤害更大。

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