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深蹲过程中运动速度对全身振动时能量消耗和底物利用的影响。

The effects of movement velocity during squatting on energy expenditure and substrate utilization in whole-body vibration.

作者信息

Garatachea Nuria, Jiménez Alfonso, Bresciani Guilherme, Mariño Nelson A, González-Gallego Javier, de Paz José A

机构信息

Institute of Biomedicine, University of León, León, Spain.

出版信息

J Strength Cond Res. 2007 May;21(2):594-8. doi: 10.1519/R-20566.1.

Abstract

The purpose of this study was to examine whether and how cycle time duration affects energy expenditure and substrate utilization during whole-body vibration (WBV). Nine men performed 3 squatting exercises in execution frequency cycles of 6, 4, and 2 seconds to 90 degrees knee flexion with vibration (Vb+) (frequency was set at 30 Hz and the amplitude of vibration was 4 mm) and without vibration (Vb-) during 3 minutes, each with an additional load of 30% of the subject's body weight. A 2-way analysis of variance for VO2 revealed a significant vibration condition main effect (p < 0.001) and a cycle time duration effect (p < 0.001). When differences were analyzed by Fisher's LSD test, cycle time duration of 2 seconds was significantly different from 4 and 6 seconds, both in Vb+ and Vb-. Total energy expenditure (EE(tot)), carbohydrate oxidation rate (EE(cho)), and fat oxidation rate (EE(fat)) demonstrated a significant vibration condition main effect (EE(tot): p < 0.01; EE(cho): p < 0.001; EE(fat): p < 0.001) and cycle time duration main effect (EE(tot) and EE(cho): p < 0.001; EE(fat): p < 0.01). EE(tot), EE(cho), and EE(fat) post hoc comparisons indicated that values for the 2-second test significantly differed from 4 and 6 seconds when compared in the same vibration condition. VO2 and EE values were greater in Vb+ than in Vb- conditions with the same cycle time duration. Our study confirms that squatting at a greater frequency helps to maximize energy expenditure during exercise with or without vibration. Therefore, cycle time duration must be controlled when vibration exercise is prescribed.

摘要

本研究的目的是探讨周期时长是否以及如何影响全身振动(WBV)过程中的能量消耗和底物利用。九名男性进行了3次深蹲练习,屈膝至90度,执行频率周期分别为6秒、4秒和2秒,分为有振动(Vb+)(频率设定为30Hz,振动幅度为4mm)和无振动(Vb-)两种情况,每次持续3分钟,且每次都额外增加受试者体重30%的负荷。对VO2进行的双向方差分析显示,振动条件主效应显著(p<0.001),周期时长效应也显著(p<0.001)。当通过Fisher最小显著差法检验分析差异时,在Vb+和Vb-两种情况下,2秒的周期时长与4秒和6秒均有显著差异。总能量消耗(EE(tot))、碳水化合物氧化率(EE(cho))和脂肪氧化率(EE(fat))均显示出显著的振动条件主效应(EE(tot):p<0.01;EE(cho):p<0.001;EE(fat):p<0.001)和周期时长主效应(EE(tot)和EE(cho):p<0.001;EE(fat):p<0.01)。EE(tot)、EE(cho)和EE(fat)的事后比较表明,在相同振动条件下,2秒测试的值与4秒和6秒的值有显著差异。在相同周期时长下,Vb+条件下的VO2和EE值高于Vb-条件。我们的研究证实,更高频率的深蹲有助于在有或无振动的运动中使能量消耗最大化。因此,在规定振动运动时必须控制周期时长。

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