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Shooting motion in high school, collegiate, and professional men's lacrosse players

机译:在高中,大学和职业男子曲棍球运动员中射击动作

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The purposes of this research were to quantify the kinematics of the lacrosse shot, based on arm dominance and player experience level. Male players (N=39; 14-30years; high school [n=24], collegiate [n=9], professional [n=6]), performed overhead shots using dominant and non-dominant sides. Motion was captured using a high-speed, 12-camera optical system and high-speed filming. Body segment rotational velocities and joint angles were determined at key points in the shot cycle from foot contact (0% of shot) to ball release (100% of shot). All players shot with less anterior trunk lean, less transverse shoulder rotation, and slower trunk-shoulder rotational velocities with the non-dominant side than the dominant side (all p<0.05). Professional players produced crosse angular velocities 21% faster than high school or collegiate players (p<0.05). Transverse shoulder rotation range of motion on both dominant and non-dominant and trunk rotation sides was highest in the professional players (p<0.05). These kinematic features enable professional players to produce faster ball speeds than younger players (138 +/- 7km/h vs. 112 +/- 15km/h, respectively; p<0.05). Less anterior lean or suboptimal rotation sequence could increase proximal shoulder forces that could contribute to injury as in other throwing sports.
机译:这项研究的目的是基于手臂的支配力和球员的经验水平来量化长曲棍球射击的运动学。男性球员(N = 39; 14-30岁;高中[n = 24],大学[n = 9],职业[n = 6])使用优势和非优势方进行头顶射门。使用高速12相机光学系统和高速摄影来捕获运动。从击球(击球的0%)到释放球(击球的100%)的击球周期中的关键点确定身体段的旋转速度和关节角度。所有球员的前躯干倾斜较少,肩部横向旋转较少,且非显支侧比显支侧的躯干-肩膀旋转速度较慢(所有p <0.05)。专业运动员的交叉角速度比高中或大学水平的运动员快21%(p <0.05)。在专业运动员中,优势和非优势以及躯干旋转侧的横向肩部旋转运动范围最高(p <0.05)。这些运动学特征使专业运动员能够比年轻运动员更快地产生球速(分别为138 +/- 7 km / h和112 +/- 15km / h; p <0.05)。较不向前倾斜或旋转不理想的旋转顺序可能会增加近端肩部压力,这可能会导致其他投掷运动中的受伤。

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