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等长股四头肌力量决定了逆风航行模拟过程中的航行表现和神经肌肉疲劳。

Isometric quadriceps strength determines sailing performance and neuromuscular fatigue during an upwind sailing emulation.

作者信息

Bourgois Jan G, Callewaert Margot, Celie Bert, De Clercq Dirk, Boone Jan

机构信息

a Department of Movement and Sport Sciences , Ghent University , Ghent 9000 , Belgium.

b Center of Sports Medicine, Ghent University Hospital , Ghent 9000 , Belgium.

出版信息

J Sports Sci. 2016;34(10):973-9. doi: 10.1080/02640414.2015.1082613. Epub 2015 Sep 1.

Abstract

This study investigates the physiological responses to upwind sailing on a laser emulation ergometer and analyses the components of the physical profile that determine the physiological responses related to sailing level. Ten male high-level laser sailors performed an upwind sailing test, incremental cycling test and quadriceps strength test. During the upwind sailing test, heart rate (HR), oxygen uptake, ventilation, respiratory exchange ratio, rating of perceived exertion (RPE) and lactate concentration were measured, combined with near-infrared spectroscopy (NIRS) and electromyography (EMG) registration of the M. Vastus lateralis. Repeated measures ANOVA showed for the cardio-respiratory, metabolic and muscles responses (mean power frequency [MPF], root mean square [RMS], deoxy[Hb+Mb]) during the upwind sailing test an initial significant increase followed by a stabilisation, despite a constant increase in RPE. Stepwise regression analysis showed that better sailing level was for 46.5% predicted by lower MPF decrease. Lower MPF decrease was for 57.8% predicted by a higher maximal isometric quadriceps strength. In conclusion, this study indicates that higher sailing level was mainly determined by a lower rate of neuromuscular fatigue during the upwind sailing test (as indicated by MPF decrease). Additionally, the level of neuromuscular fatigue was mainly determined by higher maximal isometric quadriceps strength stressing the importance of resistance training in the planning of training.

摘要

本研究调查了在激光模拟测力计上逆风航行时的生理反应,并分析了决定与航行水平相关的生理反应的身体特征组成部分。十名男性高水平激光帆船运动员进行了逆风航行测试、递增式自行车测试和股四头肌力量测试。在逆风航行测试期间,测量了心率(HR)、摄氧量、通气量、呼吸交换率、主观用力程度分级(RPE)和乳酸浓度,并结合了外侧股四头肌的近红外光谱(NIRS)和肌电图(EMG)记录。重复测量方差分析显示,在逆风航行测试期间,尽管RPE持续增加,但心肺、代谢和肌肉反应(平均功率频率[MPF]、均方根[RMS]、脱氧[Hb+Mb])最初显著增加,随后趋于稳定。逐步回归分析表明,较低的MPF下降可预测46.5%的更好航行水平。较高的最大等长股四头肌力量可预测57.8%的较低MPF下降。总之,本研究表明,较高的航行水平主要由逆风航行测试期间较低的神经肌肉疲劳率决定(如MPF下降所示)。此外,神经肌肉疲劳程度主要由较高的最大等长股四头肌力量决定,强调了阻力训练在训练计划中的重要性。

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