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扰乱局面:完美的赛艇队员同步能否减少不利的艇身晃动?

Rocking the boat: does perfect rowing crew synchronization reduce detrimental boat movements?

作者信息

Cuijpers L S, Passos P J M, Murgia A, Hoogerheide A, Lemmink K A P M, de Poel H J

机构信息

Center for Human Movement Sciences, University Medical Center Groningen, University of Groningen, Groningen, The Netherlands.

CIPER, Faculty of Human Kinetics, University of Lisbon, Lisbon, Portugal.

出版信息

Scand J Med Sci Sports. 2017 Dec;27(12):1697-1704. doi: 10.1111/sms.12800. Epub 2016 Nov 23.

Abstract

In crew rowing, crew members need to mutually synchronize their movements to achieve optimal crew performance. Intuitively, poor crew coordination is often deemed to involve additional boat movements such as surge velocity fluctuations, heave, pitch, and roll, which would imply lower efficiency (eg, due to increased hydrodynamic drag). The aim of this study was to investigate this alleged relation between crew coordination and boat movements at different stroke rates. Fifteen crews of two rowers rowed in a double scull (ie, a two-person boat) at 18, 22, 26, 30, and 34 strokes per minute. Oar angles (using potentiometers) and movements of the boat (using a three-axial accelerometer-gyroscope sensor) were measured (200 Hz). Results indicated that crew synchronization became more consistent with stroke rate, while surge, heave, and pitch fluctuations increased. Further, within each stroke rate condition, better crew synchronization was related to less roll of the boat, but increased fluctuations regarding surge, heave, and pitch. Together this demonstrates that while better crew synchronization relates to enhanced lateral stability of the boat, it inevitably involves more detrimental boat movements and hence involves lower biomechanical efficiency.

摘要

在赛艇运动中,船员们需要相互协调他们的动作,以实现最佳的团队表现。直观地说,团队协调不佳通常被认为与额外的船只运动有关,如浪涌速度波动、垂荡、俯仰和横摇,这意味着效率较低(例如,由于水动力阻力增加)。本研究的目的是调查在不同划桨频率下团队协调与船只运动之间的这种所谓关系。15组双人赛艇运动员(即两人船)以每分钟18、22、26、30和34次划桨的频率划行。测量了桨叶角度(使用电位计)和船只的运动(使用三轴加速度计-陀螺仪传感器)(200赫兹)。结果表明,团队同步性随着划桨频率变得更加一致,而浪涌、垂荡和俯仰波动增加。此外,在每个划桨频率条件下,更好的团队同步性与船只较小的横摇有关,但浪涌、垂荡和俯仰的波动增加。这共同表明,虽然更好的团队同步性与船只增强的横向稳定性有关,但它不可避免地涉及更多有害的船只运动,因此涉及较低的生物力学效率。

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