National Institute of Advanced Industrial Science & Technology (AIST), Tokyo, Japan.
National Institute of Advanced Industrial Science & Technology (AIST), Tokyo, Japan.
J Biomech. 2019 Mar 27;86:34-39. doi: 10.1016/j.jbiomech.2019.01.034. Epub 2019 Feb 1.
Although athletes with unilateral below-the-knee amputations (BKAs) generally use their affected leg, including their prosthesis, as their take-off leg for the long jump, little is known about the spring-like leg behavior and stiffness regulation of the affected leg. The purpose of this study was to investigate vertical stiffness during one-legged hopping in an elite-level long jump athlete with a unilateral BKA. We used the spring-mass model to calculate vertical stiffness, which equals the ratio of maximum vertical ground reaction force to maximum center of mass displacement, while the athlete with a BKA hopped on one leg at a range of frequencies. Then, we compared the vertical stiffness of this athlete to seven non-amputee elite-level long-jumpers. We found that from 1.8 to 3.4 Hz, the vertical stiffness of the unaffected leg for an athlete with a BKA increases with faster hopping frequencies, but the vertical stiffness of the affected leg remains nearly constant across frequencies. The athlete with a BKA attained the desired hopping frequencies at 2.2 and 2.6 Hz, but was unable to match the lowest (1.8 Hz) and two highest frequencies (3.0 and 3.4 Hz) using his affected leg. We also found that at 2.5 Hz, unaffected leg vertical stiffness was 15% greater than affected leg vertical stiffness, and the vertical stiffness of non-amputee long-jumpers was 32% greater than the affected leg vertical stiffness of an athlete with a BKA. The results of the present study suggest that the vertical stiffness regulation strategy of an athlete with a unilateral BKA is not the same in the unaffected versus affected legs, and compared to non-amputees.
虽然单侧小腿截肢(BKA)的运动员通常使用受影响的腿(包括假肢)作为跳远的起跳腿,但对于受影响腿的弹簧状腿部行为和刚度调节知之甚少。本研究的目的是研究一名单侧 BKA 精英级跳远运动员单腿跳跃时的垂直刚度。我们使用弹簧质量模型来计算垂直刚度,垂直刚度等于最大垂直地面反作用力与质心最大位移的比值,而 BKA 运动员在一系列频率下单腿跳跃。然后,我们将该运动员的垂直刚度与七名非截肢的精英级跳远运动员进行了比较。我们发现,从 1.8 到 3.4 Hz,BKA 运动员未受伤腿的垂直刚度随着跳跃频率的加快而增加,但受伤腿的垂直刚度在整个频率范围内几乎保持不变。BKA 运动员在 2.2 和 2.6 Hz 达到了所需的跳跃频率,但无法用受伤腿匹配最低(1.8 Hz)和两个最高频率(3.0 和 3.4 Hz)。我们还发现,在 2.5 Hz 时,未受伤腿的垂直刚度比受伤腿的垂直刚度大 15%,非截肢跳远运动员的垂直刚度比 BKA 运动员受伤腿的垂直刚度大 32%。本研究的结果表明,单侧 BKA 运动员未受伤腿和受伤腿的垂直刚度调节策略不同,与非截肢运动员相比也是如此。