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轮椅运动员的等速肩部旋转肌

Isokinetic shoulder rotator muscles in wheelchair athletes.

作者信息

Bernard P L, Codine P, Minier J

机构信息

Laboratoire 'Sport Performance Santisé', Faculté des Sciences du Sport et de l'Education Physique, Université Montpellier, Montpellier, France.

出版信息

Spinal Cord. 2004 Apr;42(4):222-9. doi: 10.1038/sj.sc.3101556.

Abstract

OBJECTIVES

To assess the influence of wheelchair propulsion and neurological level on isokinetic shoulder rotational strength.

SETTING

University of Montpellier, France

METHODS

Data were evaluated in three groups of subjects as follows: 12 nonathletes, 15 tennis players and 21 wheelchair athletes. We then compared 12 high paraplegic athletes (HPA) and nine low paraplegic athletes (LPA) within the group of 21 wheelchair athletes: The isokinetic tests were performed in the seated 45 degrees abducted test position in the scapular plane at 60, 180 and 300 degrees s(-1) for both shoulders. Peak torque and mean power values were gathered and, from these values, the internal/external rotation ratios were calculated.

RESULTS

Intergroup comparison showed an influence of lesion and sport on peak torque at 180 and 300 degrees s(-1) for the internal rotators and significantly higher values of the internal/external ratios in the wheelchair athlete group. For mean power, we observed significant differences under all test conditions and significant differences for ratio only on the dominant side at 180 degrees s(-1) and on the dominant side at 300 degrees s(-1). Comparison of the two groups of paraplegic athletes showed significantly higher values of peak torque and mean power of the external rotators in the LPA for all test conditions.

CONCLUSIONS

Neurological level of lesion does not systematically influence the development of internal rotator muscles; in contrast, the participation of the external rotators appears strongly correlated to neurological level. The comparison of the two sides in the two paraplegic groups showed that in two-thirds of the cases the values of the external rotators were significantly higher than those of the internal rotators on the nondominant side for peak torque and mean power. Ratios on the dominant side were systematically higher than on the nondominant side, with significant differences also noted in two-thirds of the cases. These results raise questions about the influence of neurological level and wheelchair propulsion on the muscular adaptations of the shoulder in wheelchair athletes.

摘要

目的

评估轮椅推进和神经损伤平面对等速肩部旋转力量的影响。

地点

法国蒙彼利埃大学

方法

对三组受试者的数据进行评估,具体如下:12名非运动员、15名网球运动员和21名轮椅运动员。然后,在21名轮椅运动员组中比较12名高位截瘫运动员(HPA)和9名低位截瘫运动员(LPA):在肩胛平面内,双肩均处于坐姿外展45度的测试位置,以60、180和300度/秒(-1)的速度进行等速测试。收集峰值扭矩和平均功率值,并根据这些值计算内/外旋转比率。

结果

组间比较显示,损伤和运动对180度/秒(-1)和300度/秒(-1)时内旋肌的峰值扭矩有影响,且轮椅运动员组的内/外比率值明显更高。对于平均功率,我们在所有测试条件下均观察到显著差异,仅在180度/秒(-1)时的优势侧和300度/秒(-1)时的优势侧,比率存在显著差异。两组截瘫运动员的比较显示,在所有测试条件下,低位截瘫运动员组外旋肌的峰值扭矩和平均功率值均明显更高。

结论

神经损伤平面不会系统性地影响内旋肌的发育;相反,外旋肌的参与似乎与神经损伤平面密切相关。两个截瘫组两侧的比较显示,在三分之二的病例中,非优势侧外旋肌的峰值扭矩和平均功率值明显高于内旋肌。优势侧的比率系统性地高于非优势侧,在三分之二的病例中也观察到显著差异。这些结果引发了关于神经损伤平面和轮椅推进对轮椅运动员肩部肌肉适应性影响的问题。

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