Suppr超能文献

像蝴蝶一样飞舞:冰球守门员蝴蝶式站位时,离冰和在冰上的躯干运动学比较。

Float like a Butterfly: Comparison between Off and On-Ice Torso Kinematics during the Butterfly Stance in Ice Hockey Goalkeepers.

机构信息

College of Health and Human Science, Charles Darwin University, Darwin, NT 0810, Australia.

La Trobe Rural Health School, La Trobe University, Bendigo, VIC 3550, Australia.

出版信息

Sensors (Basel). 2022 Sep 27;22(19):7320. doi: 10.3390/s22197320.

Abstract

In ice hockey, the butterfly style/stance is a technique distinguished by the goalkeepers (goalie) dropping to their knees to block attempts to score. Although this goalie style has been around for many years, comparisons between on and off-ice attire has not been undertaken. Therefore, this preliminary study compared differences in torso acceleration and energy expenditure by way of the Metabolic Equivalent of Task (MET) during off-ice and on-ice butterfly stances/saves. Seven participants each performed 8 on-ice butterfly saves/stances whilst wearing full hockey attire followed by 8 off-ice butterfly stances without wearing full hockey attire whilst torso acceleration was collected. The off-ice movement significantly increased vertical torso acceleration (p < 0.01, d > 0.90) with increased MET, compared to on-ice motion. Despite no significant difference in anteroposterior and mediolateral torso kinematics, vector magnitudes were significantly greater (p < 0.01, d > 0.90) when the stance was performed off-ice. The increased vertical acceleration observed when goalies performed the movement off-ice could be due to a failure to maintain adequate posture without the support of the external load. The results of this study may help inform off-ice training interventions for ice hockey goalkeeping.

摘要

在冰球中,蝴蝶式姿势是守门员(守门员)跪下以阻止试图得分的一种技术。尽管这种守门员风格已经存在多年,但尚未对冰上和冰下服装进行比较。因此,这项初步研究比较了在冰上和冰下蝴蝶姿势/扑救期间通过任务代谢当量(MET)来测量的躯干加速度和能量消耗的差异。 7 名参与者每人穿着完整的曲棍球装备在冰上进行了 8 次蝴蝶扑救/姿势,然后在不穿完整的曲棍球装备的情况下在冰下进行了 8 次蝴蝶姿势,同时收集了躯干加速度。与冰上运动相比,冰下运动显着增加了垂直躯干加速度(p <0.01,d >0.90),并且 MET 增加。尽管前后向和左右向躯干运动学没有显着差异,但当姿势在冰下进行时,矢量幅度显着增加(p <0.01,d >0.90)。当守门员在冰下进行此动作时,观察到的垂直加速度增加可能是由于在没有外部负载支撑的情况下无法保持足够的姿势所致。这项研究的结果可能有助于为冰球守门员提供冰上训练干预措施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b0b/9572803/7b90dd8a206b/sensors-22-07320-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验