Morgan Richard, Herrington Lee
Coventry University, Priory Street, Coventry CV1 5FB, UK.
University of Salford, Manchester, UK.
Phys Ther Sport. 2014 Aug;15(3):176-80. doi: 10.1016/j.ptsp.2013.10.003. Epub 2013 Nov 6.
To assess the effect of a tackling task replicating the force magnitudes and directions seen in a competitive game or training session, on a players shoulder joint position sense.
Repeated measures design.
Field based.
Nineteen, senior, male, semi-professional rugby union players.
Two criterion angles of 45° and 20° off maximal range of shoulder external rotation in the 90° angle of abduction, were assessed for reproduction accuracy prior to, and following a field based tackling task against an opponent. A comparison between dominant and non-dominant side accuracy was also obtained.
Prior to the tackling task, joint positioning sense was poorer at the 45° criterion angle than for 20° off the athletes' maximal range angle. Following the tackling task, error scores were significantly increased from baseline measures at the outer-range criterion angle for both dominant and non-dominant sides. In contrast to previous research the detrimental effect of the task was also greater. In addition, there was a significant decrease in accuracy at the 45° criterion angle for the players' non-dominant side.
This study found a significant decrease in accuracy of joint position sense following the tackling task. It also found this decrease to be greater than previous research findings. In contrast to previous studies that found no effect at the 45° criterion angle, this study found significant changes for the players' non-dominant side occurred at this angle. A possible explanation for this is that the sensory motor system is negatively affected by fatigue and consequently shoulder dynamic stability is reduced. This fatigue element explains the trend for increased injury frequency in the third quarter of the game and would provide a rationale for the inclusion of conditioning programmes that address fatigue resistance and motor co-ordination in the region.
评估一项模拟竞技比赛或训练中所见力量大小和方向的擒抱任务对运动员肩关节位置觉的影响。
重复测量设计。
基于场地。
19名男性高级半职业橄榄球联盟球员。
在90°外展角度下,评估两个偏离肩关节最大外旋范围45°和20°的标准角度,在与对手进行基于场地的擒抱任务之前和之后的再现准确性。还比较了优势侧和非优势侧的准确性。
在擒抱任务之前,在45°标准角度下的关节定位觉比偏离运动员最大范围角度20°时更差。在擒抱任务之后,优势侧和非优势侧在外展范围标准角度下的误差分数均较基线测量值显著增加。与之前的研究相反,该任务的有害影响也更大。此外,球员非优势侧在45°标准角度下的准确性显著下降。
本研究发现擒抱任务后关节位置觉准确性显著下降。还发现这种下降比之前的研究结果更大。与之前在45°标准角度下未发现影响的研究不同,本研究发现球员非优势侧在这个角度出现了显著变化。对此的一个可能解释是,感觉运动系统受到疲劳的负面影响,因此肩部动态稳定性降低。这种疲劳因素解释了比赛第三节受伤频率增加的趋势,并为纳入解决抗疲劳和该区域运动协调性的训练计划提供了理论依据。