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英式橄榄球争球的生物力学。技术与安全问题。

Biomechanics of rugby union scrummaging. Technical and safety issues.

作者信息

Milburn P D

机构信息

Department of Biomedical Science, University of Wollongong, New South Wales, Australia.

出版信息

Sports Med. 1993 Sep;16(3):168-79. doi: 10.2165/00007256-199316030-00002.

Abstract

In the game of ruby union, the scrum epitomises the physical nature of the game. It is both a powerful offensive skill, affording a base for attacking play, and a defensive skill in denying the opposition clean possession. However, the scrum has also been implicated in a large proportion of serious spinal injuries in rugby union. The majority of injuries are found to occur at engagement where the forces experienced by front-row players (more than two-thirds of a tonne shared across the front-row) can exceed the structural limits of the cervical spine. These large forces are a consequence of the speed of engagement and the weight (and number) of players involved in the scrum. This highlights not only the need for physical preparation of all forwards but particularly player restraint at engagement, and justifies the 'crouch-pause-engage' sequence recently introduced to 'depower' the scrum. As the hooker is the player exposed to the greatest loads throughout the scrum and subsequently most at risk, he should determine the timing of engagement of the 2 front-rows. Stability of the scrum is an indication of front-row players' ability to utilise their strength to transmit the force to their opponents as well as the push of second-row and back-row players behind them in the scrum. This appears to be independent of the size of players. Equally, it reflects the risk of chronic degeneration of the musculoskeletal system through repeated exposure to these large stresses. However, not only are older and more experienced players better able to generate and transmit these forces, they are also able to maintain the integrity of the scrum. A large proportion of individual players' efforts to generate force is lost in their coordinated effort in a normal scrum. It is assumed these forces are dissipated through players re-orientating their bodies in the scrum situation as well as to less efficient shear forces and to the elastic and compressive tissues in the body. It again reinforces the importance of physical preparation for all forwards to better withstand the large forces involved in scrummaging. Despite negative publicity surrounding the risk of serious spinal injury in rugby union, limited research has been conducted to examine either the mechanisms of injury or techniques implicated in causing injury. Biomechanical information can provide systematic bases for modifying existing techniques and assessing the physical capacities necessary to efficiently and safely play in the serum. This will both improve performance of game skills and minimise the potential for injury.

摘要

在英式橄榄球比赛中,争球集中体现了这项运动的对抗性。它既是一项强大的进攻技巧,为进攻打法提供基础,也是一项防守技巧,能阻止对手顺利控球。然而,争球也与英式橄榄球联盟中很大一部分严重脊柱损伤有关。大部分损伤被发现发生在争球开始时,前排球员所承受的力量(前排球员共分担超过三分之二吨的重量)可能会超过颈椎的结构承受极限。这些巨大的力量是争球开始时的速度以及参与争球的球员体重(和人数)所导致的结果。这不仅凸显了所有前锋进行体能准备的必要性,特别是在争球开始时球员要有所克制,也证明了最近引入的“蹲伏 - 停顿 - 开始”流程的合理性,该流程旨在降低争球的力度。由于钩球员在整个争球过程中承受的负荷最大,因此风险也最高,他应该决定前排两名球员开始争球的时机。争球的稳定性体现了前排球员利用自身力量将力量传递给对手以及身后第二排和后排球员在争球时推力的能力。这似乎与球员的体型无关。同样,它也反映了由于反复承受这些巨大压力,肌肉骨骼系统发生慢性退化的风险。然而,不仅年龄较大、经验更丰富的球员更有能力产生和传递这些力量,他们也更能保持争球的整体性。在正常争球中,球员个人产生力量的很大一部分努力在他们的协同努力中被消耗掉了。据推测,这些力量是通过球员在争球情况下重新调整身体姿势以及低效的剪切力以及身体中的弹性和压缩组织而消散的。这再次强调了所有前锋进行体能准备以更好地承受争球中巨大力量的重要性。尽管围绕英式橄榄球联盟中严重脊柱损伤风险有负面报道,但针对损伤机制或导致损伤的技术进行研究的却很少。生物力学信息可以为修改现有技术以及评估在争球中高效安全比赛所需的身体能力提供系统依据。这既能提高比赛技能的表现,又能将受伤的可能性降至最低。

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