Lyle M A, Valero-Cuevas F J, Gregor R J, Powers C M
Division of Biokinesiology and Physical Therapy, University of Southern California, Los Angeles, California, USA; School of Applied Physiology, Georgia Institute of Technology, Atlanta, Georgia, USA.
Scand J Med Sci Sports. 2015 Feb;25(1):81-8. doi: 10.1111/sms.12162. Epub 2013 Dec 11.
Agility is important for sport performance and potentially injury risk; however, factors affecting this motor skill remain unclear. Here, we evaluated the extent to which lower extremity dexterity (LED) and muscle performance were associated with agility. Fourteen male and 14 female soccer athletes participated. Agility was evaluated using a hopping sequence separately with both limbs and with the dominant limb only. The LED test evaluated the athletes' ability to dynamically regulate foot-ground interactions by compressing a spring prone to buckling with the lower limb. Muscle performance included hip and knee isometric strength and vertical jump height. Correlation analyses were used to assess the associations between muscle performance, LED, and agility. Multiple regression models were used to determine whether linear associations differed between sexes. On average, the female athletes took longer to complete the agility tasks than the male athletes. This difference could not be explained by muscle performance. Conversely, LED was found to be the primary determinant of agility (double limb: R(2) = 0.61, P < 0.001; single limb: R(2) = 0.63, P < 0.001). Our findings suggest that the sensorimotor ability to dynamically regulate foot-ground interactions as assessed by the LED test is predictive of agility in soccer athletes. We propose that LED may have implications for sport performance, injury risk, and rehabilitation.
敏捷性对运动表现和潜在的受伤风险很重要;然而,影响这项运动技能的因素仍不清楚。在此,我们评估了下肢灵活性(LED)和肌肉表现与敏捷性之间的关联程度。14名男性和14名女性足球运动员参与了研究。使用跳跃序列分别对双下肢和仅对优势下肢进行敏捷性评估。LED测试评估了运动员通过用下肢压缩一个容易弯曲的弹簧来动态调节脚与地面相互作用的能力。肌肉表现包括髋部和膝部的等长力量以及垂直跳跃高度。采用相关性分析来评估肌肉表现、LED和敏捷性之间的关联。使用多元回归模型来确定线性关联在性别之间是否存在差异。平均而言,女性运动员完成敏捷性任务的时间比男性运动员长。这种差异无法用肌肉表现来解释。相反,LED被发现是敏捷性的主要决定因素(双下肢:R² = 0.61,P < 0.001;单下肢:R² = 0.63,P < 0.001)。我们的研究结果表明,通过LED测试评估的动态调节脚与地面相互作用的感觉运动能力可预测足球运动员的敏捷性。我们提出,LED可能对运动表现、受伤风险和康复有影响。