花样滑冰三级跳和四级跳:对训练的启示。

Deborah L King
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引用次数: 43

摘要

本文的目的是回顾三重奏和四重奏花样滑冰跳跃的生物力学,重点关注对力量和调节计划有影响的信息。至少,为了完成跳跃所需的转数,滑冰运动员必须平衡平均角速度和在空中的时间。高转速跳跃时的垂直速度与低转速跳跃时相似;然而,当比较不同能力的滑冰运动员时,在相同类型的跳跃中,能力较高的运动员在起飞时产生更大的垂直速度。腿部有力的伸展是产生垂直速度的主要因素。有些跳跃使用双腿的不对称伸展,而其他跳跃只需要一条腿的伸展。角速度主要由滑冰者的惯性矩控制,这意味着滑冰者必须在推进阶段后有力地阻止手臂和腿的运动,然后在飞行过程中迅速将手臂和腿靠近旋转轴。训练练习强调偏心和同心的肌肉运动,并适应不对称或单方面的运动,如箱子跳跃和实心球投掷,是花样滑冰运动员冰上训练计划的重要组成部分。
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Performing triple and quadruple figure skating jumps: implications for training.

The purpose of this paper is to review the biomechanics of triple and quadruple figure skating jumps, focusing on information that has implications for strength and conditioning programs. At a minimum, to complete the required revolutions in a jump, a skater must balance the average angular velocity with the time in the air. Vertical velocity at takeoff is similar in high revolution jumps to that in low revolution jumps; however, when comparing skaters of different abilities, those with higher abilities generate greater vertical velocities at takeoff for the same type of jump. Powerful extension of the legs is the primary factor in generating vertical velocity. Some jumps use asymmetrical extension of both legs, while other jumps involve extension of only one leg. Angular velocity is controlled primarily by the skater's moment of inertia, which means skaters must forcefully arrest the motion of the arms and legs after the propulsion phase and then quickly position the arms and legs close to the axis of rotation during flight. Training exercises that emphasize eccentric and concentric muscle actions and which are adaptable to asymmetrical or unilateral motions, such as box jumps and medicine ball throws, are a crucial component to off-ice training programs for figure skaters.

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