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截肢对基础和改良核心练习中运动链肌肉活动的影响。

Influence of Amputation on Kinetic Chain Musculature Activity During Basic and Modified Core Exercises.

机构信息

State Key Laboratory of Tribology, Department of Mechanical Engineering, Tsinghua University, Beijing, China.

出版信息

Int J Sports Physiol Perform. 2024 Mar 20;19(5):487-495. doi: 10.1123/ijspp.2023-0215. Print 2024 May 1.

Abstract

PURPOSE

Core strength is vital for athletic performance, and many more exercises that involve the kinetic chain have been designed for able-bodied athletes. Disabilities that impair the kinetic chain can reduce the effectiveness of strength training. However, the impact of amputation on core strength training of people with disabilities and its underlying mechanism remains unclear. This study aimed to evaluate the muscle activation patterns and levels in athletes with amputation during 4 basic and modified weight-bearing core strength-training exercises.

METHODS

Fifteen elite athletes with unilateral amputation (170.6 [7.3] cm; 63.9 [11.9] kg; 25.9 [5.3] y) volunteered for this study. Surface electromyography was used to measure the muscle activity mainly in the lumbopelvic-hip complex-stabilizing muscles during 4 kinetic chain trunk exercises with and without modifications.

RESULTS

The significance level was set at α = .05. The results showed a significant difference in muscle activation between different body sides (P < .05). Specifically, amputation on the support position resulted in a diagonal pattern of muscle activation, and amputation on the free distal segments resulted in a unilateral dominant pattern with higher activation in muscles on the nonamputated side (P < .05). Modifications led to significant decreases in muscle activation asymmetry index (P < .05).

CONCLUSIONS

Amputation caused muscle activation asymmetry and 2 activation patterns. Modifications by enhancing proximal stability and adjusting distal loading effectively reduced the asymmetry of muscle activation. Coaches and clinicians can use these results to tailor exercises for athletes with disabilities in training and rehabilitation.

摘要

目的

核心力量对运动表现至关重要,许多涉及运动链的练习已经为健全运动员设计。影响运动链的残疾会降低力量训练的效果。然而,截肢对残疾运动员核心力量训练的影响及其潜在机制仍不清楚。本研究旨在评估运动员在进行 4 种基本和改良的负重核心力量训练练习时的肌肉激活模式和水平。

方法

15 名单侧截肢(170.6 [7.3] 厘米;63.9 [11.9] 千克;25.9 [5.3] 岁)的精英运动员自愿参加了这项研究。使用表面肌电图测量 4 种运动链躯干练习中主要位于腰骨盆髋复合体稳定肌的肌肉活动,包括有和没有改良的练习。

结果

显著性水平设定为 α =.05。结果显示,不同身体侧的肌肉激活存在显著差异(P <.05)。具体来说,支撑位截肢导致肌肉激活的对角线模式,而自由远端段截肢导致单侧优势模式,非截肢侧的肌肉激活更高(P <.05)。改良导致肌肉激活不对称指数显著降低(P <.05)。

结论

截肢导致肌肉激活的不对称和 2 种激活模式。改良通过增强近端稳定性和调整远端负荷有效地降低了肌肉激活的不对称性。教练和临床医生可以在训练和康复中使用这些结果为残疾运动员量身定制练习。

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