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NCAA 足球运动员的髋关节和膝关节运动学的位置特异性。

Position-Specific Hip and Knee Kinematics in NCAA Football Athletes.

机构信息

Human Performance Innovation Laboratory, School of Kinesiology, University of Michigan, Ann Arbor, Michigan, USA.

Department of Orthopaedic Surgery, University of Michigan, Ann Arbor, Michigan, USA.

出版信息

Orthop J Sports Med. 2014 Jun 2;2(6):2325967114534591. doi: 10.1177/2325967114534591. eCollection 2014 Jun.

Abstract

BACKGROUND

Femoroacetabular impingement is a debilitating hip condition commonly affecting athletes playing American football. The condition is associated with reduced hip range of motion; however, little is known about the range-of-motion demands of football athletes. This knowledge is critical to effective management of this condition.

PURPOSE

To (1) develop a normative database of game-like hip and knee kinematics used by football athletes and (2) analyze kinematic data by playing position. The hypothesis was that kinematics would be similar between running backs and defensive backs and between wide receivers and quarterbacks, and that linemen would perform the activities with the most erect lower limb posture.

STUDY DESIGN

Descriptive laboratory study.

METHODS

Forty National Collegiate Athletic Association (NCAA) football athletes, representing 5 playing positions (quarterback, defensive back, running back, wide receiver, offensive lineman), executed game-like maneuvers while lower body kinematics were recorded via optical motion capture. Passive hip range of motion at 90° of hip flexion was assessed using a goniometer. Passive range of motion, athlete physical dimensions, hip function, and hip and knee rotations were submitted to 1-way analysis of variance to test for differences between playing positions. Correlations between maximal hip and knee kinematics and maximal hip kinematics and passive range of motion were also computed.

RESULTS

Hip and knee kinematics were similar across positions. Significant differences arose with linemen, who used lower maximal knee flexion (mean ± SD, 45.04° ± 7.27°) compared with running backs (61.20° ± 6.07°; P < .001) and wide receivers (54.67° ± 6.97°; P = .048) during the cut. No significant differences were found among positions for hip passive range of motion (overall means: 102° ± 15° [flexion]; 25° ± 9° [internal rotation]; 25° ± 8° [external rotation]). Several maximal hip measures were found to negatively correlate with maximal knee kinematics.

CONCLUSION

A normative database of hip and knee kinematics utilized by football athletes was developed. Position-specific analyses revealed that linemen use smaller joint motions when executing dynamic tasks but do not demonstrate passive range of motion deficits compared with other positions.

CLINICAL RELEVANCE

Knowledge of requisite game-like hip and knee ranges of motion is critical for developing goals for nonoperative or surgical recovery of hip and knee range of motion in the symptomatic athlete. These data help to identify playing positions that require remedial hip-related strength and conditioning protocols. Negative correlations between hip and knee kinematics indicated that constrained hip motion, as seen in linemen, could promote injurious motions at the knee.

摘要

背景

股骨髋臼撞击症是一种常见的髋关节疾病,常影响美式足球运动员。这种疾病与髋关节活动范围减小有关;然而,对于足球运动员的运动范围需求知之甚少。了解这些知识对于这种疾病的有效管理至关重要。

目的

(1)制定足球运动员使用的类似游戏的髋关节和膝关节运动学的规范数据库,(2)按比赛位置分析运动学数据。假设跑卫和防守后卫之间以及外接手和四分卫之间的运动学相似,并且线卫将以最直立的下肢姿势进行活动。

研究设计

描述性实验室研究。

方法

40 名美国大学生体育协会(NCAA)足球运动员,代表 5 个比赛位置(四分卫、防守后卫、跑卫、外接手、进攻线卫),在执行类似游戏的动作时,通过光学运动捕捉记录下下肢运动学。使用量角器评估 90°髋关节屈曲时的被动髋关节活动度。被动运动范围、运动员身体尺寸、髋关节功能以及髋关节和膝关节旋转被提交给单因素方差分析,以测试比赛位置之间的差异。还计算了最大髋关节和膝关节运动学与最大髋关节运动学和被动运动范围之间的相关性。

结果

髋关节和膝关节运动学在各位置之间相似。在线卫中出现了显著差异,与跑卫(61.20°±6.07°;P<0.001)和外接手(54.67°±6.97°;P=0.048)相比,他们在切球时使用的最大膝关节屈曲度较低(平均±标准差,45.04°±7.27°)。在髋关节被动运动范围方面,各位置之间没有发现显著差异(总体平均值:102°±15°[屈曲];25°±9°[内旋];25°±8°[外旋])。发现几个最大髋关节测量值与最大膝关节运动学呈负相关。

结论

制定了足球运动员使用的髋关节和膝关节运动学规范数据库。位置特异性分析表明,线卫在执行动态任务时使用较小的关节运动,但与其他位置相比,他们没有表现出被动运动范围的缺陷。

临床意义

了解所需的类似游戏的髋关节和膝关节运动范围对于制定非手术或手术恢复髋关节和膝关节运动范围的症状运动员的目标至关重要。这些数据有助于确定需要纠正髋关节相关力量和适应性训练方案的比赛位置。髋关节和膝关节运动学之间的负相关表明,线卫中可见的髋关节运动受限可能会促进膝关节的损伤运动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a96c/4555604/cf8bd5d96415/10.1177_2325967114534591-fig1.jpg

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